row_id string | dataset_id string | source_dataset string | source_file string | source_table string | source_sha string | row_index int64 | split string | subject_type string | entry_id int64 | sequence_id int64 | target_sequence_id int64 | source_sequence_length int64 | target_sequence_length int64 | protein_id int64 | protein_name string | organism string | isoform int64 | protein_ids string | protein_names string | organisms string | isoforms string | uniprot_accessions string | interpro_accessions string | ec_numbers string | megascale_ids string | other_references string | mutations string | substitutions string | deletions string | insertions string | mutation_count int64 | substitution_count int64 | deletion_count int64 | insertion_count int64 | first_position int64 | first_source_aa string | first_target_aa string | conservation float64 | feature_types string | pdb_ids string | afdb_ids string | structure_ids string | structure_methods string | structure_resolution_min float64 | residue_positions string | residue_chain_names string | residue_secondary_structures string | residue_in_pocket_any bool | residue_in_tunnel_any bool | residue_asa_mean float64 | residue_bfactor_mean float64 | experiment_id int64 | experiment_dataset string | ph float64 | measure string | method string | buffer string | buffer_conc string | exp_temperature float64 | ion string | ion_conc string | pdb_chain_mutation string | tm float64 | dtm float64 | dg float64 | dg_text string | ddg float64 | dh float64 | dcp float64 | dhvh float64 | cm float64 | m_value float64 | trypsin_ml float64 | chymotrypsin_ml float64 | stabilizing float64 | stabilizing_text string | domainome_fitness float64 | domainome_fitness_std float64 | domainome_ddg float64 | domainome_ddg_std float64 | reversibility string | state string | measurement_types string | measurement_datasets string | annotation_types string | publication_id string | publication_type string | publication_title string | publication_year int64 | publication_doi string | publication_pmid string | publication_journal string | publication_url string | publication_author_count int64 | publication_authors string | annotations_json string | measurements_json string | features_json string |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
fireprotdb:555 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 555 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,741 | ProTherm | 5 | DSC | GdnHCl | Sodium acetate-Acetic acid | 0.1 M | 25 | null | null | 11 | null | null | null | null | null | null | null | null | null | null | null | null | null | yes | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1380 | ARTICLE | Folding of ribonuclease T1. 1. Existence of multiple unfolded states created by proline isomerization. | 1,990 | 10.1021/bi00464a023 | 2110823 | Biochemistry;29;3053-61 | 4 | Hahn U|Kiefhaber T|Quaas R|Schmid F X | [{"numValue":5.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"Sodium acetate-Acetic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M"... | [{"datasets":[],"id":75749,"numValue":11.0,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":75750,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:556 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 556 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,747 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 25 | null | null | 5.47 | null | null | null | null | 4.58 | 1.2 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":75767,"numValue":5.47,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":75768,"numValue":1.2,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":75769,"numValue":4.58,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":75770,"numValue":null,"references":[],"s... | |||||||||||||||||||||||||
fireprotdb:557 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 557 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,748 | ProTherm | 7.9 | DSC | Urea | HEPPSO | 30 mM | 25 | null | null | 4.11 | null | null | null | null | 3.44 | 1.28 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":7.9,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"HEPPSO","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}... | [{"datasets":[],"id":75771,"numValue":4.11,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":75772,"numValue":1.28,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":75773,"numValue":3.44,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":75774,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:558 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 558 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,761 | ProTherm | 7 | Fluorescence | Urea | MOPS | 30 mM | 25 | null | null | 5.5 | null | null | null | null | null | null | null | null | null | null | null | null | null | yes | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1384 | ARTICLE | Ribonuclease T1 is stabilized by cation and anion binding. | 1,988 | 10.1021/bi00409a018 | 3134046 | Biochemistry;27;3242-6 | 2 | Pace C N|Grimsley G R | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Fluorescence","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER... | [{"datasets":[],"id":75808,"numValue":5.5,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":75809,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:559 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 559 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,778 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 25 | null | null | 5.55 | null | null | null | null | 4.58 | 1.2 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1018 | ARTICLE | Thermodynamics of ribonuclease T1 denaturation. | 1,992 | 10.1021/bi00135a019 | 1591247 | Biochemistry;31;4876-82 | 5 | Sturtevant J M|Hu C Q|Pace C N|Thomson J A|Erickson R E | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":75855,"numValue":5.55,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":75856,"numValue":1.2,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":75857,"numValue":4.58,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":75858,"numValue":null,"references":[],"s... | |||||||||||||||||||||||||
fireprotdb:561 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 561 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,862 | ProTherm | 3 | Absorbance | GdnHCl | beta-alanine | 0.1 M | 25 | null | null | 4.48 | null | null | null | null | 2.42 | 1.85 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1407 | ARTICLE | How valid are denaturant-induced unfolding free energy measurements? Level of conformance to common assumptions over an extended range of ribonuclease A stability. | 1,995 | 10.1021/bi00011a035 | 7893674 | Biochemistry;34;3771-81 | 2 | Yao M|Bolen D W | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"beta-alanine","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","type"... | [{"datasets":[],"id":76149,"numValue":4.48,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76150,"numValue":1.85,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76151,"numValue":2.42,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76152,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:562 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 562 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,863 | ProTherm | 3.5 | Absorbance | GdnHCl | beta-alanine | 0.1 M | 25 | null | null | 5.78 | null | null | null | null | 3.4 | 1.7 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1407 | ARTICLE | How valid are denaturant-induced unfolding free energy measurements? Level of conformance to common assumptions over an extended range of ribonuclease A stability. | 1,995 | 10.1021/bi00011a035 | 7893674 | Biochemistry;34;3771-81 | 2 | Yao M|Bolen D W | [{"numValue":3.5,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"beta-alanine","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","type"... | [{"datasets":[],"id":76153,"numValue":5.78,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76154,"numValue":1.7,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76155,"numValue":3.4,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76156,"numValue":null,"references":[],"st... | |||||||||||||||||||||||||
fireprotdb:563 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 563 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,864 | ProTherm | 6 | Absorbance | GdnHCl | Bis-Tris | 0.1 M | 25 | null | null | 8.82 | null | null | null | null | 6.49 | 1.36 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1407 | ARTICLE | How valid are denaturant-induced unfolding free energy measurements? Level of conformance to common assumptions over an extended range of ribonuclease A stability. | 1,995 | 10.1021/bi00011a035 | 7893674 | Biochemistry;34;3771-81 | 2 | Yao M|Bolen D W | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"Bis-Tris","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","type":"BU... | [{"datasets":[],"id":76157,"numValue":8.82,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76158,"numValue":1.36,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76159,"numValue":6.49,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76160,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:564 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 564 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,865 | ProTherm | 7 | Absorbance | GdnHCl | HEPES | 0.1 M | 25 | null | null | 9.26 | null | null | null | null | 7.26 | 1.28 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1407 | ARTICLE | How valid are denaturant-induced unfolding free energy measurements? Level of conformance to common assumptions over an extended range of ribonuclease A stability. | 1,995 | 10.1021/bi00011a035 | 7893674 | Biochemistry;34;3771-81 | 2 | Yao M|Bolen D W | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"HEPES","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","type":"BUFFE... | [{"datasets":[],"id":76161,"numValue":9.26,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76162,"numValue":1.28,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76163,"numValue":7.26,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76164,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:565 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 565 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,866 | ProTherm | 8.5 | Absorbance | GdnHCl | taurine | 0.1 M | 25 | null | null | 9.3 | null | null | null | null | 7.69 | 1.21 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1407 | ARTICLE | How valid are denaturant-induced unfolding free energy measurements? Level of conformance to common assumptions over an extended range of ribonuclease A stability. | 1,995 | 10.1021/bi00011a035 | 7893674 | Biochemistry;34;3771-81 | 2 | Yao M|Bolen D W | [{"numValue":8.5,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"taurine","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","type":"BUF... | [{"datasets":[],"id":76165,"numValue":9.3,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76166,"numValue":1.21,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76167,"numValue":7.69,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76168,"numValue":null,"references":[],"s... | |||||||||||||||||||||||||
fireprotdb:567 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 567 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,946 | ProTherm | 3 | Absorbance | GdnHCl | glycine-HCl | 0.05 M | 25 | KCl | 0.1-1.0 M | null | null | 5.03 | null | null | null | null | 1.78 | 2.83 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1429 | ARTICLE | Protein stability: functional dependence of denaturational Gibbs energy on urea concentration. | 1,999 | 10.1021/bi982078m | 10029541 | Biochemistry;38;2471-9 | 2 | Gupta R|Ahmad F | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type"... | [{"datasets":[],"id":76434,"numValue":5.03,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76435,"numValue":2.83,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76436,"numValue":1.78,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76437,"numValue":null,"references":[],"... | |||||||||||||||||||||||
fireprotdb:568 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 568 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,947 | ProTherm | 3 | Absorbance | Urea | glycine-HCl | 0.05 M | 25 | KCl | 0.10 M | null | null | 4.07 | null | null | null | null | 2.05 | 1.98 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1429 | ARTICLE | Protein stability: functional dependence of denaturational Gibbs energy on urea concentration. | 1,999 | 10.1021/bi982078m | 10029541 | Biochemistry;38;2471-9 | 2 | Gupta R|Ahmad F | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"... | [{"datasets":[],"id":76438,"numValue":4.07,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76439,"numValue":1.98,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76440,"numValue":2.05,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76441,"numValue":null,"references":[],"... | |||||||||||||||||||||||
fireprotdb:569 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 569 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,948 | ProTherm | 3 | Absorbance | Urea | glycine-HCl | 0.05 M | 25 | KCl | 0.50 M | null | null | 4.1 | null | null | null | null | 2.4 | 1.71 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1429 | ARTICLE | Protein stability: functional dependence of denaturational Gibbs energy on urea concentration. | 1,999 | 10.1021/bi982078m | 10029541 | Biochemistry;38;2471-9 | 2 | Gupta R|Ahmad F | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"... | [{"datasets":[],"id":76442,"numValue":4.1,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76443,"numValue":1.71,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76444,"numValue":2.4,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76445,"numValue":null,"references":[],"st... | |||||||||||||||||||||||
fireprotdb:570 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 570 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,949 | ProTherm | 3 | Absorbance | Urea | glycine-HCl | 0.05 M | 25 | KCl | 1.00 M | null | null | 4.49 | null | null | null | null | 2.82 | 1.59 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1429 | ARTICLE | Protein stability: functional dependence of denaturational Gibbs energy on urea concentration. | 1,999 | 10.1021/bi982078m | 10029541 | Biochemistry;38;2471-9 | 2 | Gupta R|Ahmad F | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"... | [{"datasets":[],"id":76446,"numValue":4.49,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76447,"numValue":1.59,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76448,"numValue":2.82,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76449,"numValue":null,"references":[],"... | |||||||||||||||||||||||
fireprotdb:571 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 571 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,950 | ProTherm | 3 | Absorbance | Urea | glycine-HCl | 0.05 M | 25 | KCl | 1.25 M | null | null | 4.99 | null | null | null | null | 3.02 | 1.65 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1429 | ARTICLE | Protein stability: functional dependence of denaturational Gibbs energy on urea concentration. | 1,999 | 10.1021/bi982078m | 10029541 | Biochemistry;38;2471-9 | 2 | Gupta R|Ahmad F | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"... | [{"datasets":[],"id":76450,"numValue":4.99,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76451,"numValue":1.65,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76452,"numValue":3.02,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76453,"numValue":null,"references":[],"... | |||||||||||||||||||||||
fireprotdb:572 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 572 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,951 | ProTherm | 3 | Absorbance | Urea | glycine-HCl | 0.05 M | 25 | KCl | 1.50 M | null | null | 5.26 | null | null | null | null | 3.41 | 1.54 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1429 | ARTICLE | Protein stability: functional dependence of denaturational Gibbs energy on urea concentration. | 1,999 | 10.1021/bi982078m | 10029541 | Biochemistry;38;2471-9 | 2 | Gupta R|Ahmad F | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"... | [{"datasets":[],"id":76454,"numValue":5.26,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76455,"numValue":1.54,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76456,"numValue":3.41,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76457,"numValue":null,"references":[],"... | |||||||||||||||||||||||
fireprotdb:573 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 573 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,952 | ProTherm | 3 | Absorbance | Urea | glycine-HCl | 0.05 M | 25 | KCl | 0.1 M | null | null | 3.01 | null | null | null | null | 1.9 | 1.58 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1429 | ARTICLE | Protein stability: functional dependence of denaturational Gibbs energy on urea concentration. | 1,999 | 10.1021/bi982078m | 10029541 | Biochemistry;38;2471-9 | 2 | Gupta R|Ahmad F | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"... | [{"datasets":[],"id":76458,"numValue":3.01,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76459,"numValue":1.58,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76460,"numValue":1.9,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76461,"numValue":null,"references":[],"s... | |||||||||||||||||||||||
fireprotdb:574 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 574 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,953 | ProTherm | 3 | Absorbance | Urea | glycine-HCl | 0.05 M | 25 | KCl | 0.1 M | null | null | 2.45 | null | null | null | null | 1.39 | 1.76 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1429 | ARTICLE | Protein stability: functional dependence of denaturational Gibbs energy on urea concentration. | 1,999 | 10.1021/bi982078m | 10029541 | Biochemistry;38;2471-9 | 2 | Gupta R|Ahmad F | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"... | [{"datasets":[],"id":76462,"numValue":2.45,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76463,"numValue":1.76,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76464,"numValue":1.39,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76465,"numValue":null,"references":[],"... | |||||||||||||||||||||||
fireprotdb:575 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 575 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,954 | ProTherm | 3 | Absorbance | Urea | glycine-HCl | 0.05 M | 25 | KCl | 0.1 M | null | null | 1.24 | null | null | null | null | 0.79 | 1.57 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1429 | ARTICLE | Protein stability: functional dependence of denaturational Gibbs energy on urea concentration. | 1,999 | 10.1021/bi982078m | 10029541 | Biochemistry;38;2471-9 | 2 | Gupta R|Ahmad F | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"... | [{"datasets":[],"id":76466,"numValue":1.24,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76467,"numValue":1.57,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76468,"numValue":0.79,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76469,"numValue":null,"references":[],"... | |||||||||||||||||||||||
fireprotdb:576 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 576 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,955 | ProTherm | 3 | Absorbance | Urea | glycine-HCl | 0.05 M | 25 | KCl | 0.1 M | null | null | 0.82 | null | null | null | null | 0.47 | 1.73 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1429 | ARTICLE | Protein stability: functional dependence of denaturational Gibbs energy on urea concentration. | 1,999 | 10.1021/bi982078m | 10029541 | Biochemistry;38;2471-9 | 2 | Gupta R|Ahmad F | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"... | [{"datasets":[],"id":76470,"numValue":0.82,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76471,"numValue":1.73,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76472,"numValue":0.47,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76473,"numValue":null,"references":[],"... | |||||||||||||||||||||||
fireprotdb:578 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 578 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,973 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 25 | null | null | 6.09 | null | null | null | null | 5.2 | 1.17 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 342 | ARTICLE | Buried, charged, non-ion-paired aspartic acid 76 contributes favorably to the conformational stability of ribonuclease T1. | 1,999 | 10.1021/bi991422s | 10529213 | Biochemistry;38;13379-84 | 2 | Giletto A|Pace C N | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":76534,"numValue":6.09,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76535,"numValue":1.17,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76536,"numValue":5.2,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76537,"numValue":null,"references":[],"s... | |||||||||||||||||||||||||
fireprotdb:579 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 579 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 20,996 | ProTherm | 4.6 | Absorbance | GdnHCl | Sodium acetate | 100 mM | 25 | null | null | 7.22 | null | null | null | null | 2.82 | 2.56 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1340 | ARTICLE | Comparison of local and global stability of an analogue of a disulfide-folding intermediate with those of the wild-type protein in bovine pancreatic ribonuclease A: identification of specific regions of stable structure along the oxidative folding pathway. | 1,999 | 10.1021/bi9911684 | 10600104 | Biochemistry;38;16432-42 | 3 | Scheraga H A|Laity J H|Montelione G T | [{"numValue":4.6,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"Sodium acetate","type":"BUFFER"},{"numValue":null,"strValue":"100 mM","ty... | [{"datasets":[],"id":76600,"numValue":7.22,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76601,"numValue":2.56,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76602,"numValue":2.82,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76603,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:581 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 581 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,105 | ProTherm | 2.8 | DSC | Thermal | glycine | 10 mM | 25 | null | null | 4.3 | null | null | null | null | null | null | null | null | null | null | null | null | null | Unknown | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1233 | ARTICLE | Heat capacity change for ribonuclease A folding. | 1,999 | 10.1110/ps.8.7.1500 | 10422839 | Protein Sci;8;1500-4 | 4 | Pace C N|Makhatadze G I|Grimsley G R|Thomas S T | [{"numValue":2.8,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"glycine","type":"BUFFER"},{"numValue":null,"strValue":"10 mM","type":"BUFFER_CO... | [{"datasets":[],"id":76897,"numValue":4.3,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76898,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:582 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 582 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,106 | ProTherm | 3 | DSC | Thermal | glycine | 10 mM | 25 | null | null | 5.2 | null | null | null | null | null | null | null | null | null | null | null | null | null | Unknown | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1233 | ARTICLE | Heat capacity change for ribonuclease A folding. | 1,999 | 10.1110/ps.8.7.1500 | 10422839 | Protein Sci;8;1500-4 | 4 | Pace C N|Makhatadze G I|Grimsley G R|Thomas S T | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"glycine","type":"BUFFER"},{"numValue":null,"strValue":"10 mM","type":"BUFFER_CO... | [{"datasets":[],"id":76899,"numValue":5.2,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76900,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:583 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 583 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,107 | ProTherm | 3.6 | DSC | Thermal | acetate | 10 mM | 25 | null | null | 6.7 | null | null | null | null | null | null | null | null | null | null | null | null | null | Unknown | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1233 | ARTICLE | Heat capacity change for ribonuclease A folding. | 1,999 | 10.1110/ps.8.7.1500 | 10422839 | Protein Sci;8;1500-4 | 4 | Pace C N|Makhatadze G I|Grimsley G R|Thomas S T | [{"numValue":3.6,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"acetate","type":"BUFFER"},{"numValue":null,"strValue":"10 mM","type":"BUFFER_CO... | [{"datasets":[],"id":76901,"numValue":6.7,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76902,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:584 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 584 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,108 | ProTherm | 4 | DSC | Thermal | acetate | 10 mM | 25 | null | null | 7.2 | null | null | null | null | null | null | null | null | null | null | null | null | null | Unknown | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1233 | ARTICLE | Heat capacity change for ribonuclease A folding. | 1,999 | 10.1110/ps.8.7.1500 | 10422839 | Protein Sci;8;1500-4 | 4 | Pace C N|Makhatadze G I|Grimsley G R|Thomas S T | [{"numValue":4.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"acetate","type":"BUFFER"},{"numValue":null,"strValue":"10 mM","type":"BUFFER_CO... | [{"datasets":[],"id":76903,"numValue":7.2,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76904,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:585 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 585 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,109 | ProTherm | 5 | DSC | Thermal | acetate | 10 mM | 25 | null | null | 8.1 | null | null | null | null | null | null | null | null | null | null | null | null | null | Unknown | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1233 | ARTICLE | Heat capacity change for ribonuclease A folding. | 1,999 | 10.1110/ps.8.7.1500 | 10422839 | Protein Sci;8;1500-4 | 4 | Pace C N|Makhatadze G I|Grimsley G R|Thomas S T | [{"numValue":5.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"acetate","type":"BUFFER"},{"numValue":null,"strValue":"10 mM","type":"BUFFER_CO... | [{"datasets":[],"id":76905,"numValue":8.1,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76906,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:586 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 586 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,110 | ProTherm | 6 | DSC | Thermal | MOPS or HEPES | 10 mM | 25 | null | null | 8.5 | null | null | null | null | null | null | null | null | null | null | null | null | null | Unknown | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1233 | ARTICLE | Heat capacity change for ribonuclease A folding. | 1,999 | 10.1110/ps.8.7.1500 | 10422839 | Protein Sci;8;1500-4 | 4 | Pace C N|Makhatadze G I|Grimsley G R|Thomas S T | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"MOPS or HEPES","type":"BUFFER"},{"numValue":null,"strValue":"10 mM","type":"BUF... | [{"datasets":[],"id":76907,"numValue":8.5,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":76908,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:588 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 588 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,113 | ProTherm | 7 | CD | Urea | MOPS | 30 mM | 25 | null | null | null | null | null | null | null | 5.23 | 1.23 | null | null | null | null | null | null | null | Unknown | M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 366 | ARTICLE | Increasing protein stability by altering long-range coulombic interactions. | 1,999 | 10.1110/ps.8.9.1843 | 10493585 | Protein Sci;8;1843-9 | 5 | Grimsley G R|Shaw K L|Fee L R|Alston R W|Huyghues-Despointes B M | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":76915,"numValue":1.23,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76916,"numValue":5.23,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76917,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:589 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 589 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,114 | ProTherm | 2.5 | CD | Urea | glycine | 30 mM | 25 | null | null | null | null | null | null | null | 3.66 | 1.59 | null | null | null | null | null | null | null | Unknown | M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 366 | ARTICLE | Increasing protein stability by altering long-range coulombic interactions. | 1,999 | 10.1110/ps.8.9.1843 | 10493585 | Protein Sci;8;1843-9 | 5 | Grimsley G R|Shaw K L|Fee L R|Alston R W|Huyghues-Despointes B M | [{"numValue":2.5,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}... | [{"datasets":[],"id":76918,"numValue":1.59,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":76919,"numValue":3.66,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":76920,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:590 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 590 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,269 | ProTherm | 7 | Absorbance | GdnHCl | Unknown | 25 | KCl | 0.1 M | null | null | 8.74 | null | null | null | null | 2.97 | 2.93 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|ION|ION_CONC | 1456 | ARTICLE | Determining stability of proteins from guanidinium chloride transition curves. | 1,992 | 10.1042/bj2870481 | 1445206 | Biochem J;287 ( Pt 2);481-5 | 3 | Yadav S|Ahmad F|Taneja S | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"Unknown","type":"BUFFER"},{"numValue":null,"strValue":"KCl","type":"ION"}... | [{"datasets":[],"id":77390,"numValue":8.74,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":77391,"numValue":2.93,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":77392,"numValue":2.97,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":77393,"numValue":null,"references":[],"... | ||||||||||||||||||||||||
fireprotdb:591 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 591 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,270 | ProTherm | 3 | Absorbance | GdnHCl | Unknown | 25 | KCl | 0.1 M | null | null | 5.66 | null | null | null | null | 1.94 | 2.91 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|ION|ION_CONC | 1456 | ARTICLE | Determining stability of proteins from guanidinium chloride transition curves. | 1,992 | 10.1042/bj2870481 | 1445206 | Biochem J;287 ( Pt 2);481-5 | 3 | Yadav S|Ahmad F|Taneja S | [{"numValue":3.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"Unknown","type":"BUFFER"},{"numValue":null,"strValue":"KCl","type":"ION"}... | [{"datasets":[],"id":77394,"numValue":5.66,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":77395,"numValue":2.91,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":77396,"numValue":1.94,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":77397,"numValue":null,"references":[],"... | ||||||||||||||||||||||||
fireprotdb:593 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 593 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,272 | ProTherm | 1.3 | Absorbance | GdnHCl | Unknown | 25 | KCl | 0.1 M | null | null | 1.9 | null | null | null | null | 0.93 | 2.03 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|ION|ION_CONC | 1456 | ARTICLE | Determining stability of proteins from guanidinium chloride transition curves. | 1,992 | 10.1042/bj2870481 | 1445206 | Biochem J;287 ( Pt 2);481-5 | 3 | Yadav S|Ahmad F|Taneja S | [{"numValue":1.3,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"Unknown","type":"BUFFER"},{"numValue":null,"strValue":"KCl","type":"ION"}... | [{"datasets":[],"id":77402,"numValue":1.9,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":77403,"numValue":2.03,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":77404,"numValue":0.93,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":77405,"numValue":null,"references":[],"s... | ||||||||||||||||||||||||
fireprotdb:594 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 594 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,363 | ProTherm | 5 | Fluorescence | GdnHCl | Sodium acetate | 0.1 M | 25 | null | null | null | null | null | null | null | 3.63 | 2.75 | null | null | null | null | null | null | null | yes | M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 753 | ARTICLE | The role of a trans-proline in the folding mechanism of ribonuclease T1. | 1,996 | 10.1111/j.1432-1033.1996.00516.x | 8917450 | Eur J Biochem;241;516-24 | 5 | Hahn U|Schindler T|Landt O|Schmid F X|Mayr L M | [{"numValue":5.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Fluorescence","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"Sodium acetate","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","t... | [{"datasets":[],"id":77714,"numValue":2.75,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":77715,"numValue":3.63,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":77716,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:595 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 595 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,364 | ProTherm | 8 | Fluorescence | GdnHCl | PIPES | 0.1 M | 25 | null | null | null | null | null | null | null | 2.4 | 2.46 | null | null | null | null | null | null | null | yes | M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 753 | ARTICLE | The role of a trans-proline in the folding mechanism of ribonuclease T1. | 1,996 | 10.1111/j.1432-1033.1996.00516.x | 8917450 | Eur J Biochem;241;516-24 | 5 | Hahn U|Schindler T|Landt O|Schmid F X|Mayr L M | [{"numValue":8.0,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Fluorescence","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"PIPES","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","type":"BUF... | [{"datasets":[],"id":77717,"numValue":2.46,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":77718,"numValue":2.4,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":77719,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:596 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 596 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,394 | ProTherm | 1.2 | Absorbance | Thermal | glycine-HCl | 30 mM | 25 | NaCl | 0.10 M | null | null | 1 | null | null | 1.47 | 54.8 | null | null | null | null | null | null | null | null | null | Unknown | DCP|DHVH|DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1473 | ARTICLE | His...Asp catalytic dyad of ribonuclease A: conformational stability of the wild-type, D121N, D121A, and H119A enzymes. | 1,998 | 10.1021/bi981688j | 9922164 | Biochemistry;37;17958-64 | 4 | Park C|Raines R T|Quirk D J|Thompson J E | [{"numValue":1.2,"strValue":null,"type":"PH"},{"numValue":25.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"glycine-HCl","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type"... | [{"datasets":[],"id":77818,"numValue":1.47,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":77819,"numValue":54.8,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":77820,"numValue":1.0,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":77821,"numValue":null,"references":[... | |||||||||||||||||||||||
fireprotdb:598 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 598 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,443 | ProTherm | 2.8 | DSC | Urea | glycine | 30 mM | 24.9 | null | null | 4.33 | null | null | null | null | 1.8 | 2.33 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":2.8,"strValue":null,"type":"PH"},{"numValue":24.9,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"... | [{"datasets":[],"id":77931,"numValue":4.33,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":77932,"numValue":2.33,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":77933,"numValue":1.8,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":77934,"numValue":null,"references":[],"s... | |||||||||||||||||||||||||
fireprotdb:599 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 599 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,444 | ProTherm | 2.8 | DSC | Thermal | glycine | 10 mM | 24.9 | null | null | 4.3 | null | null | null | null | null | null | null | null | null | null | null | null | null | Unknown | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1233 | ARTICLE | Heat capacity change for ribonuclease A folding. | 1,999 | 10.1110/ps.8.7.1500 | 10422839 | Protein Sci;8;1500-4 | 4 | Pace C N|Makhatadze G I|Grimsley G R|Thomas S T | [{"numValue":2.8,"strValue":null,"type":"PH"},{"numValue":24.9,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"glycine","type":"BUFFER"},{"numValue":null,"strValue":"10 mM","type":"BUFFER_CO... | [{"datasets":[],"id":77935,"numValue":4.3,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":77936,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:600 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 600 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,450 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 23.05 | null | null | 5.81 | null | null | null | null | 4.86 | 1.2 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":23.05,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":77956,"numValue":5.81,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":77957,"numValue":1.2,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":77958,"numValue":4.86,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":77959,"numValue":null,"references":[],"s... | |||||||||||||||||||||||||
fireprotdb:601 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 601 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,451 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 23.05 | null | null | 5.89 | null | null | null | null | 4.86 | 1.2 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1018 | ARTICLE | Thermodynamics of ribonuclease T1 denaturation. | 1,992 | 10.1021/bi00135a019 | 1591247 | Biochemistry;31;4876-82 | 5 | Sturtevant J M|Hu C Q|Pace C N|Thomson J A|Erickson R E | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":23.05,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":77960,"numValue":5.89,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":77961,"numValue":1.2,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":77962,"numValue":4.86,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":77963,"numValue":null,"references":[],"s... | |||||||||||||||||||||||||
fireprotdb:602 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 602 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,551 | ProTherm | 5.95 | DSC | Urea | MES | 30 mM | 22 | null | null | 7.55 | null | null | null | null | 6.32 | 1.19 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":5.95,"strValue":null,"type":"PH"},{"numValue":22.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MES","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":78279,"numValue":7.55,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":78280,"numValue":1.19,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":78281,"numValue":6.32,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":78282,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:603 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 603 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,552 | ProTherm | 7.9 | DSC | Urea | HEPPSO | 30 mM | 22 | null | null | 4.67 | null | null | null | null | 3.91 | 1.25 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":7.9,"strValue":null,"type":"PH"},{"numValue":22.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"HEPPSO","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}... | [{"datasets":[],"id":78283,"numValue":4.67,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":78284,"numValue":1.25,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":78285,"numValue":3.91,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":78286,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:604 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 604 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,577 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 21.1 | null | null | 5.95 | null | null | null | null | 4.98 | 1.1 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":21.1,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":78361,"numValue":5.95,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":78362,"numValue":1.1,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":78363,"numValue":4.98,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":78364,"numValue":null,"references":[],"s... | |||||||||||||||||||||||||
fireprotdb:605 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 605 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,578 | ProTherm | 2.8 | DSC | Urea | glycine | 30 mM | 21.1 | null | null | 4.85 | null | null | null | null | 2.02 | 2.43 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":2.8,"strValue":null,"type":"PH"},{"numValue":21.1,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"... | [{"datasets":[],"id":78365,"numValue":4.85,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":78366,"numValue":2.43,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":78367,"numValue":2.02,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":78368,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:606 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 606 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,579 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 21.1 | null | null | 6.03 | null | null | null | null | 4.98 | 1.1 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1018 | ARTICLE | Thermodynamics of ribonuclease T1 denaturation. | 1,992 | 10.1021/bi00135a019 | 1591247 | Biochemistry;31;4876-82 | 5 | Sturtevant J M|Hu C Q|Pace C N|Thomson J A|Erickson R E | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":21.1,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":78369,"numValue":6.03,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":78370,"numValue":1.1,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":78371,"numValue":4.98,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":78372,"numValue":null,"references":[],"s... | |||||||||||||||||||||||||
fireprotdb:607 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 607 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,580 | ProTherm | 2.8 | DSC | Thermal | glycine | 10 mM | 21.1 | null | null | 4.9 | null | null | null | null | null | null | null | null | null | null | null | null | null | Unknown | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1233 | ARTICLE | Heat capacity change for ribonuclease A folding. | 1,999 | 10.1110/ps.8.7.1500 | 10422839 | Protein Sci;8;1500-4 | 4 | Pace C N|Makhatadze G I|Grimsley G R|Thomas S T | [{"numValue":2.8,"strValue":null,"type":"PH"},{"numValue":21.1,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"glycine","type":"BUFFER"},{"numValue":null,"strValue":"10 mM","type":"BUFFER_CO... | [{"datasets":[],"id":78373,"numValue":4.9,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":78374,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:608 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 608 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,733 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 20 | null | null | 6.72 | null | null | null | null | 5.71 | 1.18 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 342 | ARTICLE | Buried, charged, non-ion-paired aspartic acid 76 contributes favorably to the conformational stability of ribonuclease T1. | 1,999 | 10.1021/bi991422s | 10529213 | Biochemistry;38;13379-84 | 2 | Giletto A|Pace C N | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":20.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":78850,"numValue":6.72,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":78851,"numValue":1.18,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":78852,"numValue":5.71,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":78853,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:610 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 610 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,894 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 19.2 | null | null | 6.29 | null | null | null | null | 5.26 | 1.21 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":19.2,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79334,"numValue":6.29,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79335,"numValue":1.21,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79336,"numValue":5.26,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79337,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:612 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 612 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,896 | ProTherm | 5.95 | DSC | Urea | MES | 30 mM | 19.05 | null | null | 7.94 | null | null | null | null | 6.64 | 1.19 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":5.95,"strValue":null,"type":"PH"},{"numValue":19.05,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MES","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79342,"numValue":7.94,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79343,"numValue":1.19,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79344,"numValue":6.64,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79345,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:613 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 613 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,897 | ProTherm | 7.9 | DSC | Urea | HEPPSO | 30 mM | 19.05 | null | null | 5.01 | null | null | null | null | 4.19 | 1.11 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":7.9,"strValue":null,"type":"PH"},{"numValue":19.05,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"HEPPSO","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"... | [{"datasets":[],"id":79346,"numValue":5.01,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79347,"numValue":1.11,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79348,"numValue":4.19,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79349,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:614 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 614 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,906 | ProTherm | 2.8 | DSC | Urea | glycine | 30 mM | 17.1 | null | null | 5.41 | null | null | null | null | 2.25 | 2.44 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1110 | ARTICLE | A new method for determining the heat capacity change for protein folding. | 1,989 | 10.1021/bi00432a026 | 2499351 | Biochemistry;28;2520-5 | 2 | Pace C N|Laurents D V | [{"numValue":2.8,"strValue":null,"type":"PH"},{"numValue":17.1,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"... | [{"datasets":[],"id":79378,"numValue":5.41,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79379,"numValue":2.44,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79380,"numValue":2.25,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79381,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:615 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 615 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,907 | ProTherm | 2.8 | DSC | Thermal | glycine | 10 mM | 17.1 | null | null | 5.6 | null | null | null | null | null | null | null | null | null | null | null | null | null | Unknown | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1233 | ARTICLE | Heat capacity change for ribonuclease A folding. | 1,999 | 10.1110/ps.8.7.1500 | 10422839 | Protein Sci;8;1500-4 | 4 | Pace C N|Makhatadze G I|Grimsley G R|Thomas S T | [{"numValue":2.8,"strValue":null,"type":"PH"},{"numValue":17.1,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"glycine","type":"BUFFER"},{"numValue":null,"strValue":"10 mM","type":"BUFFER_CO... | [{"datasets":[],"id":79382,"numValue":5.6,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79383,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:616 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 616 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,916 | ProTherm | 2 | CD | GdnHCl | HCl | 15 | null | null | 3.68 | null | null | null | null | 1.86 | null | null | null | null | null | null | null | null | yes | DG|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER | 1053 | ARTICLE | Compactness of thermally and chemically denatured ribonuclease A as revealed by volume and compressibility. | 1,995 | 10.1021/bi00006a008 | 7849047 | Biochemistry;34;1878-84 | 2 | Gekko K|Tamura Y | [{"numValue":2.0,"strValue":null,"type":"PH"},{"numValue":15.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"HCl","type":"BUFFER"}] | [{"datasets":[],"id":79409,"numValue":3.68,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79410,"numValue":1.86,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79411,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | ||||||||||||||||||||||||||
fireprotdb:617 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 617 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,925 | ProTherm | 8 | CD | Urea | Tris-HCl | 0.1 M | 15 | NaCl | 2.5 M | null | null | 2.61 | null | null | null | null | null | null | null | null | null | null | null | null | null | Unknown | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 937 | ARTICLE | Folding mechanism of ribonuclease T1 in the absence of the disulfide bonds. | 1,994 | 10.1021/bi00252a029 | 7981223 | Biochemistry;33;14608-19 | 2 | Schmid F X|M?cke M | [{"numValue":8.0,"strValue":null,"type":"PH"},{"numValue":15.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"Tris-HCl","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","type":"BUFFER_CONC"... | [{"datasets":[],"id":79437,"numValue":2.61,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79438,"numValue":null,"references":[],"strValue":"Unknown","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:618 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 618 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,936 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 15 | null | null | null | null | null | null | null | 6.43 | 1.14 | null | null | null | null | null | null | null | yes | M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 342 | ARTICLE | Buried, charged, non-ion-paired aspartic acid 76 contributes favorably to the conformational stability of ribonuclease T1. | 1,999 | 10.1021/bi991422s | 10529213 | Biochemistry;38;13379-84 | 2 | Giletto A|Pace C N | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":15.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79474,"numValue":1.14,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79475,"numValue":6.43,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79476,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:619 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 619 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,937 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 15 | null | null | 7.34 | null | null | null | null | 6.43 | 1.14 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 342 | ARTICLE | Buried, charged, non-ion-paired aspartic acid 76 contributes favorably to the conformational stability of ribonuclease T1. | 1,999 | 10.1021/bi991422s | 10529213 | Biochemistry;38;13379-84 | 2 | Giletto A|Pace C N | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":15.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79477,"numValue":7.34,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79478,"numValue":1.14,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79479,"numValue":6.43,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79480,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:620 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 620 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,942 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 14.9 | null | null | 6.84 | null | null | null | null | 5.65 | 1.26 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1018 | ARTICLE | Thermodynamics of ribonuclease T1 denaturation. | 1,992 | 10.1021/bi00135a019 | 1591247 | Biochemistry;31;4876-82 | 5 | Sturtevant J M|Hu C Q|Pace C N|Thomson J A|Erickson R E | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":14.9,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79496,"numValue":6.84,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79497,"numValue":1.26,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79498,"numValue":5.65,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79499,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:623 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 623 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,974 | ProTherm | 8 | Fluorescence | GdnHCl | Tris | 0.1 M | 10 | null | null | 8.44 | null | null | null | null | 3.21 | 2.63 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 670 | ARTICLE | Stability and folding kinetics of ribonuclease T1 are strongly altered by the replacement of cis-proline 39 with alanine. | 1,993 | 10.1006/jmbi.1993.1336 | 8515459 | J Mol Biol;231;897-912 | 4 | Hahn U|Landt O|Schmid F X|Mayr L M | [{"numValue":8.0,"strValue":null,"type":"PH"},{"numValue":10.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Fluorescence","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"Tris","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","type":"BUFF... | [{"datasets":[],"id":79590,"numValue":8.44,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79591,"numValue":2.63,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79592,"numValue":3.21,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79593,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:624 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 624 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,979 | ProTherm | 5 | Fluorescence | GdnHCl | Sodium acetate | 50 mM | 10 | null | null | 9.54 | null | null | null | null | 5.18 | 1.84 | null | null | null | null | null | null | null | Unknown | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 940 | ARTICLE | Influence of primary sequence transpositions on the folding pathways of ribonuclease T1. | 1,996 | 10.1021/bi953026p | 8756488 | Biochemistry;35;10223-33 | 2 | Raushel F M|Johnson J L | [{"numValue":5.0,"strValue":null,"type":"PH"},{"numValue":10.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Fluorescence","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"Sodium acetate","type":"BUFFER"},{"numValue":null,"strValue":"50 mM","t... | [{"datasets":[],"id":79610,"numValue":9.54,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79611,"numValue":1.84,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79612,"numValue":5.18,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79613,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:625 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 625 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 21,989 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 10 | null | null | 7.87 | null | null | null | null | 6.7 | 1.18 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 342 | ARTICLE | Buried, charged, non-ion-paired aspartic acid 76 contributes favorably to the conformational stability of ribonuclease T1. | 1,999 | 10.1021/bi991422s | 10529213 | Biochemistry;38;13379-84 | 2 | Giletto A|Pace C N | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":10.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79649,"numValue":7.87,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79650,"numValue":1.18,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79651,"numValue":6.7,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79652,"numValue":null,"references":[],"s... | |||||||||||||||||||||||||
fireprotdb:626 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 626 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,000 | ProTherm | 5 | Fluorescence | GdnHCl | Sodium acetate | 0.1 M | 10 | null | null | null | null | null | null | null | 3.94 | 2.49 | null | null | null | null | null | null | null | yes | M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 753 | ARTICLE | The role of a trans-proline in the folding mechanism of ribonuclease T1. | 1,996 | 10.1111/j.1432-1033.1996.00516.x | 8917450 | Eur J Biochem;241;516-24 | 5 | Hahn U|Schindler T|Landt O|Schmid F X|Mayr L M | [{"numValue":5.0,"strValue":null,"type":"PH"},{"numValue":10.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Fluorescence","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"Sodium acetate","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","t... | [{"datasets":[],"id":79682,"numValue":2.49,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79683,"numValue":3.94,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79684,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:627 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 627 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,001 | ProTherm | 8 | Fluorescence | GdnHCl | PIPES | 0.1 M | 10 | null | null | null | null | null | null | null | 3.21 | 2.63 | null | null | null | null | null | null | null | yes | M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 753 | ARTICLE | The role of a trans-proline in the folding mechanism of ribonuclease T1. | 1,996 | 10.1111/j.1432-1033.1996.00516.x | 8917450 | Eur J Biochem;241;516-24 | 5 | Hahn U|Schindler T|Landt O|Schmid F X|Mayr L M | [{"numValue":8.0,"strValue":null,"type":"PH"},{"numValue":10.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Fluorescence","type":"MEASURE"},{"numValue":null,"strValue":"GdnHCl","type":"METHOD"},{"numValue":null,"strValue":"PIPES","type":"BUFFER"},{"numValue":null,"strValue":"0.1 M","type":"BUF... | [{"datasets":[],"id":79685,"numValue":2.63,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79686,"numValue":3.21,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79687,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:629 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 629 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,027 | ProTherm | 7 | DSC | Urea | MOPS | 30 mM | 5 | null | null | 8.32 | null | null | null | null | 7.04 | 1.18 | null | null | null | null | null | null | null | yes | DG|M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 342 | ARTICLE | Buried, charged, non-ion-paired aspartic acid 76 contributes favorably to the conformational stability of ribonuclease T1. | 1,999 | 10.1021/bi991422s | 10529213 | Biochemistry;38;13379-84 | 2 | Giletto A|Pace C N | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":5.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79775,"numValue":8.32,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79776,"numValue":1.18,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79777,"numValue":7.04,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79778,"numValue":null,"references":[],"... | |||||||||||||||||||||||||
fireprotdb:630 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 630 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,029 | ProTherm | 7 | Fluorescence | Urea | MOPS | 30 mM | 5 | NaCl | 0.1 M | null | null | 0.85 | null | null | null | null | null | null | null | null | null | null | null | null | null | yes | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1234 | ARTICLE | The paradox between m values and deltaCp's for denaturation of ribonuclease T1 with disulfide bonds intact and broken. | 1,999 | 10.1110/ps.8.6.1314 | 10386881 | Protein Sci;8;1314-9 | 2 | Bolen D W|Baskakov I V | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":5.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Fluorescence","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_... | [{"datasets":[],"id":79780,"numValue":0.85,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79781,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:631 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 631 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,065 | ProTherm | 7 | Fluorescence | Urea | MOPS | 30 mM | 2 | NaCl | 0.1 M | null | null | 1.2 | null | null | null | null | null | null | null | null | null | null | null | null | null | yes | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1234 | ARTICLE | The paradox between m values and deltaCp's for denaturation of ribonuclease T1 with disulfide bonds intact and broken. | 1,999 | 10.1110/ps.8.6.1314 | 10386881 | Protein Sci;8;1314-9 | 2 | Bolen D W|Baskakov I V | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":2.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Fluorescence","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_... | [{"datasets":[],"id":79899,"numValue":1.2,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79900,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:632 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 632 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,070 | ProTherm | 2.5 | CD | Urea | glycine | 30 mM | 0 | null | null | null | null | null | null | null | 2.78 | 1.58 | null | null | null | null | null | null | null | yes | M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 895 | ARTICLE | Helix propensities are identical in proteins and peptides. | 1,997 | 10.1021/bi9707180 | 9283083 | Biochemistry;36;10923-9 | 3 | Pace C N|Scholtz J M|Myers J K | [{"numValue":2.5,"strValue":null,"type":"PH"},{"numValue":0.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"glycine","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79915,"numValue":1.58,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79916,"numValue":2.78,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79917,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:633 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 633 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,071 | ProTherm | 7 | CD | Urea | MOPS | 30 mM | 0 | null | null | null | null | null | null | null | 4.32 | 1.28 | null | null | null | null | null | null | null | yes | M|CM|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC | 895 | ARTICLE | Helix propensities are identical in proteins and peptides. | 1,997 | 10.1021/bi9707180 | 9283083 | Biochemistry;36;10923-9 | 3 | Pace C N|Scholtz J M|Myers J K | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":0.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79918,"numValue":1.28,"references":[],"strValue":null,"type":"M"},{"datasets":[],"id":79919,"numValue":4.32,"references":[],"strValue":null,"type":"CM"},{"datasets":[],"id":79920,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:634 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 634 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,079 | ProTherm | 7 | Fluorescence | Urea | MOPS | 30 mM | 0 | NaCl | 0.1 M | null | null | 1.31 | null | null | null | null | null | null | null | null | null | null | null | null | null | yes | DG|REVERSIBILITY | PH|EXP_TEMPERATURE|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1234 | ARTICLE | The paradox between m values and deltaCp's for denaturation of ribonuclease T1 with disulfide bonds intact and broken. | 1,999 | 10.1110/ps.8.6.1314 | 10386881 | Protein Sci;8;1314-9 | 2 | Bolen D W|Baskakov I V | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":0.0,"strValue":null,"type":"EXP_TEMPERATURE"},{"numValue":null,"strValue":"Fluorescence","type":"MEASURE"},{"numValue":null,"strValue":"Urea","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_... | [{"datasets":[],"id":79942,"numValue":1.31,"references":[],"strValue":null,"type":"DG"},{"datasets":[],"id":79943,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:635 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 635 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,085 | ProTherm | 5 | CD | Thermal | sodium acetate | 5-20 mM | null | 64.3 | null | null | null | null | null | 380 | null | null | null | null | null | null | null | null | null | yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1567 | ARTICLE | Local and long-range interactions in the thermal unfolding transition of bovine pancreatic ribonuclease A. | 2,001 | 10.1021/bi001945w | 11141060 | Biochemistry;40;93-104 | 6 | Navon A|Ittah V|Haas E|Scheraga H A|Laity J H|Gussakovsky E E | [{"numValue":5.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"sodium acetate","type":"BUFFER"},{"numValue":null,"strValue":"5-20 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79960,"numValue":64.3,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":79961,"numValue":380.0,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":79962,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:636 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 636 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,086 | ProTherm | 5 | Absorbance | Thermal | sodium acetate | 5-20 mM | null | 58.2 | null | null | null | null | null | 426 | null | null | null | null | null | null | null | null | null | yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1567 | ARTICLE | Local and long-range interactions in the thermal unfolding transition of bovine pancreatic ribonuclease A. | 2,001 | 10.1021/bi001945w | 11141060 | Biochemistry;40;93-104 | 6 | Navon A|Ittah V|Haas E|Scheraga H A|Laity J H|Gussakovsky E E | [{"numValue":5.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"sodium acetate","type":"BUFFER"},{"numValue":null,"strValue":"5-20 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79963,"numValue":58.2,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":79964,"numValue":426.0,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":79965,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:637 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 637 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,087 | ProTherm | 5 | Absorbance | Thermal | sodium acetate | 50 mM | null | 61.5 | null | null | null | null | null | null | null | null | null | null | null | null | null | null | null | yes | TM|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1568 | ARTICLE | Pressure versus temperature unfolding of ribonuclease A: an FTIR spectroscopic characterization of 10 variants at the carboxy-terminal site. | 2,001 | 10.1110/ps.43001 | 11274463 | Protein Sci;10;725-34 | 5 | Vilanova M|Torrent J|Rubens P|Heremans K|Rib? M | [{"numValue":5.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"sodium acetate","type":"BUFFER"},{"numValue":null,"strValue":"50 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":79966,"numValue":61.5,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":79967,"numValue":null,"references":[],"strValue":"yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:638 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 638 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,188 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 62.4 | null | null | null | null | null | 99.9 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80252,"numValue":62.4,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80253,"numValue":99.9,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80254,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:639 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 639 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,189 | ProTherm | 6 | CD | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 62.3 | null | null | null | null | null | 101.58 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type":"ION"}... | [{"datasets":[],"id":80255,"numValue":62.3,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80256,"numValue":101.58,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80257,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:640 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 640 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,190 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 60.5 | null | null | null | null | 1.25 | 106.84 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80258,"numValue":60.5,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80259,"numValue":1.25,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80260,"numValue":106.84,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80261,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:641 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 641 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,191 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 58.3 | null | null | null | null | 1.24 | 103.97 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80262,"numValue":58.3,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80263,"numValue":1.24,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80264,"numValue":103.97,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80265,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:642 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 642 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,192 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 56.3 | null | null | null | null | null | 99.9 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80266,"numValue":56.3,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80267,"numValue":99.9,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80268,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:643 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 643 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,193 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 54 | null | null | null | null | null | 97.28 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80269,"numValue":54.0,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80270,"numValue":97.28,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80271,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:644 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 644 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,194 | ProTherm | 6 | CD | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 56 | null | null | null | null | null | 98.23 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type":"ION"}... | [{"datasets":[],"id":80272,"numValue":56.0,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80273,"numValue":98.23,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80274,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:645 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 645 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,195 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 62.9 | null | null | null | null | null | 113.77 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80275,"numValue":62.9,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80276,"numValue":113.77,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80277,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:648 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 648 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,198 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 65.9 | null | null | null | null | null | 118.79 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80284,"numValue":65.9,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80285,"numValue":118.79,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80286,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:649 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 649 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,199 | ProTherm | 6 | CD | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 66.1 | null | null | null | null | null | 120.46 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type":"ION"}... | [{"datasets":[],"id":80287,"numValue":66.1,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80288,"numValue":120.46,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80289,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:650 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 650 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,200 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 63.7 | null | null | null | null | 1.22 | 113.77 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80290,"numValue":63.7,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80291,"numValue":1.22,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80292,"numValue":113.77,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80293,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:651 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 651 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,201 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 64.5 | null | null | null | null | 1.24 | 114.96 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80294,"numValue":64.5,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80295,"numValue":1.24,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80296,"numValue":114.96,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80297,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:652 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 652 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,202 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 65.9 | null | null | null | null | 1.22 | 118.79 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80298,"numValue":65.9,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80299,"numValue":1.22,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80300,"numValue":118.79,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80301,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:653 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 653 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,203 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 66.4 | null | null | null | null | 1.23 | 121.89 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80302,"numValue":66.4,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80303,"numValue":1.23,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80304,"numValue":121.89,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80305,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:654 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 654 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,204 | ProTherm | 6 | CD | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 66.5 | null | null | null | null | null | 120.46 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type":"ION"}... | [{"datasets":[],"id":80306,"numValue":66.5,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80307,"numValue":120.46,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80308,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:655 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 655 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,205 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 61.5 | null | null | null | null | 1.23 | 108.75 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80309,"numValue":61.5,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80310,"numValue":1.23,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80311,"numValue":108.75,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80312,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:656 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 656 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,206 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 60.8 | null | null | null | null | 1.25 | 104.92 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80313,"numValue":60.8,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80314,"numValue":1.25,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80315,"numValue":104.92,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80316,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:657 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 657 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,207 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 59.8 | null | null | null | null | 1.27 | 103.01 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80317,"numValue":59.8,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80318,"numValue":1.27,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80319,"numValue":103.01,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80320,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:658 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 658 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,208 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 58.8 | null | null | null | null | 1.23 | 98.95 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80321,"numValue":58.8,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80322,"numValue":1.23,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80323,"numValue":98.95,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80324,"numValue":null,"references"... | |||||||||||||||||||||||
fireprotdb:659 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 659 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,209 | ProTherm | 6 | CD | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 59 | null | null | null | null | null | 100.14 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type":"ION"}... | [{"datasets":[],"id":80325,"numValue":59.0,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80326,"numValue":100.14,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80327,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:660 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 660 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,210 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 61.9 | null | null | null | null | 1.24 | 108.99 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80328,"numValue":61.9,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80329,"numValue":1.24,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80330,"numValue":108.99,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80331,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:661 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 661 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,211 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 61 | null | null | null | null | 1.22 | 104.92 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80332,"numValue":61.0,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80333,"numValue":1.22,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80334,"numValue":104.92,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80335,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:662 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 662 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,212 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 60.6 | null | null | null | null | 1.21 | 101.82 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80336,"numValue":60.6,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80337,"numValue":1.21,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80338,"numValue":101.82,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80339,"numValue":null,"references... | |||||||||||||||||||||||
fireprotdb:663 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 663 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,213 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 59.8 | null | null | null | null | 1.2 | 100.86 | null | null | null | null | null | null | null | null | null | Yes | TM|DCP|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80340,"numValue":59.8,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80341,"numValue":1.2,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80342,"numValue":100.86,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80343,"numValue":null,"references"... | |||||||||||||||||||||||
fireprotdb:664 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 664 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,214 | ProTherm | 6 | CD | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | 60 | null | null | null | null | null | 99.43 | null | null | null | null | null | null | null | null | null | Yes | TM|DHVH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type":"ION"}... | [{"datasets":[],"id":80344,"numValue":60.0,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80345,"numValue":99.43,"references":[],"strValue":null,"type":"DHVH"},{"datasets":[],"id":80346,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:665 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 665 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,217 | ProTherm | 6 | Absorbance | Thermal | Cacodylic acid | 0.05 M | null | KCl | 0.1 M | null | null | null | null | null | 1.23 | null | null | null | null | null | null | null | null | null | null | Yes | DCP|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC|ION|ION_CONC | 1575 | ARTICLE | Testing the paradigm that the denaturing effect of urea on protein stability is offset by methylamines at the physiological concentration ratio of 2:1 (urea:methylamines). | 2,007 | 10.1016/j.bbapap.2007.09.006 | 17962089 | Biochim Biophys Acta;1774;1555-62 | 6 | Ahmad Faizan|Singh Laishram Rajendrakumar|Ali Dar Tanveer|Haque Inamul|Anjum Farah|Moosavi-Movahedi Ali Akbar | [{"numValue":6.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"Absorbance","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"Cacodylic acid","type":"BUFFER"},{"numValue":null,"strValue":"0.05 M","type":"BUFFER_CONC"},{"numValue":null,"strValue":"KCl","type... | [{"datasets":[],"id":80351,"numValue":1.23,"references":[],"strValue":null,"type":"DCP"},{"datasets":[],"id":80352,"numValue":null,"references":[],"strValue":"Yes","type":"REVERSIBILITY"}] | |||||||||||||||||||||||
fireprotdb:667 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 667 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,239 | ProTherm | 6.8 | DSC | Thermal | phosphate | 10 mM | null | 63.8 | null | null | null | 113.7 | null | null | null | null | null | null | null | null | null | null | null | no | TM|DH|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC | 1580 | ARTICLE | Thermal unfolding of ribonuclease A in phosphate at neutral pH: deviations from the two-state model. | 2,001 | 10.1110/ps.47101 | 11316877 | Protein Sci;10;970-8 | 4 | Pancoska P|Stelea S D|Benight A S|Keiderling T A | [{"numValue":6.8,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"phosphate","type":"BUFFER"},{"numValue":null,"strValue":"10 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":80400,"numValue":63.8,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80401,"numValue":113.7,"references":[],"strValue":null,"type":"DH"},{"datasets":[],"id":80402,"numValue":null,"references":[],"strValue":"no","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:668 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 668 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,275 | ProTherm | 7 | CD | Thermal | MOPS | 30 mM | null | 51.2 | null | null | null | null | null | null | null | null | null | null | null | null | null | null | null | yes(0.94) | TM|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC | 46 | ARTICLE | Hydrophobic core manipulations in ribonuclease T1. | 2,001 | 10.1021/bi010565n | 11513591 | Biochemistry;40;10140-9 | 5 | Backmann J|De Vos S|Steyaert J|Loris R|Pr?vost M | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"CD","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":80515,"numValue":51.2,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80516,"numValue":null,"references":[],"strValue":"yes(0.94)","type":"REVERSIBILITY"}] | |||||||||||||||||||||||||
fireprotdb:669 | fireprotdb | LiteFold/FireProtDB | labeled/fireprotdb/fireprotdb_search_all.jsonl | tables/labeled_fireprotdb_fireprotdb_search_all.jsonl.jsonl | 79354b4f8754e21c3eb41aaf3dd63ba34ae750cd | 669 | train | sequence | 30 | 30 | -1 | 130 | -1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | 2 | Guanyl-specific ribonuclease T1 | Aspergillus oryzae (strain ATCC 42149 / RIB 40) | 1 | P00651 | IPR000026|IPR016191|IPR051386|IPR048269 | 4.6.1.24 | 0 | 0 | 0 | 0 | -1 | null | null | false | false | null | null | 22,276 | ProTherm | 7 | DSC | Thermal | MOPS | 30 mM | null | 51.5 | null | null | null | null | null | null | null | null | null | null | null | null | null | null | null | yes(0.94) | TM|REVERSIBILITY | PH|MEASURE|METHOD|BUFFER|BUFFER_CONC | 46 | ARTICLE | Hydrophobic core manipulations in ribonuclease T1. | 2,001 | 10.1021/bi010565n | 11513591 | Biochemistry;40;10140-9 | 5 | Backmann J|De Vos S|Steyaert J|Loris R|Pr?vost M | [{"numValue":7.0,"strValue":null,"type":"PH"},{"numValue":null,"strValue":"DSC","type":"MEASURE"},{"numValue":null,"strValue":"Thermal","type":"METHOD"},{"numValue":null,"strValue":"MOPS","type":"BUFFER"},{"numValue":null,"strValue":"30 mM","type":"BUFFER_CONC"}] | [{"datasets":[],"id":80517,"numValue":51.5,"references":[],"strValue":null,"type":"TM"},{"datasets":[],"id":80518,"numValue":null,"references":[],"strValue":"yes(0.94)","type":"REVERSIBILITY"}] |
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