pdb_id stringlengths 4 4 | mmcif_path stringlengths 20 20 | mmcif_file_size_bytes int64 7.32k 102M | mmcif_blob_id stringlengths 40 40 | pdb_url stringlengths 35 35 | rcsb_download_url stringlengths 43 43 | classification stringlengths 0 67 | accession_date stringlengths 8 8 | accession_date_iso stringdate 1973-11-01 00:00:00 2026-04-21 00:00:00 | title stringlengths 3 390 | source_organism stringlengths 0 798 | authors stringlengths 6 999 | raw_resolution stringlengths 0 11 | resolution_angstrom float64 0 50 ⌀ | resolution_is_unknown bool 2
classes | experimental_method stringclasses 21
values | has_entries_idx_metadata bool 1
class | split_bucket int64 1 9 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
9h18 | mmcif/h1/9h18.cif.gz | 282,502 | 930ceff4deb8ad38ae884199996041775345cd16 | https://www.rcsb.org/structure/9H18 | https://files.rcsb.org/download/9h18.cif.gz | ANTIMICROBIAL PROTEIN | 10/09/24 | 2024-10-09 | Crystal structure of OXA-405 in complex with nacubactam | Serratia marcescens | Hoff, J.F., Goudar, K.E., Hinchliffe, P., Spencer, J. | 1.33 | 1.33 | false | X-RAY DIFFRACTION | true | 3 |
9h19 | mmcif/h1/9h19.cif.gz | 1,519,666 | 19dfe2397a354cccedc3b7df257523facb229a77 | https://www.rcsb.org/structure/9H19 | https://files.rcsb.org/download/9h19.cif.gz | PHOTOSYNTHESIS | 10/09/24 | 2024-10-09 | Cryo-EM structure of RC-dLH complex model I from Gem. groenlandica strain TET16 | Gemmatimonas groenlandica | Gardiner, A., Qian, P., Koblizek, M., Jing, Y., Joosten, M., Jakobi, A., Bina, D., Mujakic, I., Gardian, Z., Kaftan, D., Castro-Hartmann, P. | 2.3 | 2.3 | false | ELECTRON MICROSCOPY | true | 9 |
9h1a | mmcif/h1/9h1a.cif.gz | 929,404 | 612c0733ec208070c640c220f756b91be4c7df76 | https://www.rcsb.org/structure/9H1A | https://files.rcsb.org/download/9h1a.cif.gz | HYDROLASE | 10/09/24 | 2024-10-09 | Crystal structure of Angiotensin-1 converting enzyme N-domain in complex with dual ACE/NEP inhibitor AD014 | Homo sapiens | Cozier, G.E., Acharya, K.R. | 1.85 | 1.85 | false | X-RAY DIFFRACTION | true | 2 |
9h1b | mmcif/h1/9h1b.cif.gz | 933,545 | f4975fc09e1f22769a2fc06086bc73279005906e | https://www.rcsb.org/structure/9H1B | https://files.rcsb.org/download/9h1b.cif.gz | HYDROLASE | 10/09/24 | 2024-10-09 | Crystal structure of Angiotensin-1 converting enzyme N-domain in complex with dual ACE/NEP inhibitor AD015 | Homo sapiens | Cozier, G.E., Acharya, K.R. | 1.7 | 1.7 | false | X-RAY DIFFRACTION | true | 4 |
9h1c | mmcif/h1/9h1c.cif.gz | 465,281 | 041fdcd3eee83e706a20979d31624d43b634cc7c | https://www.rcsb.org/structure/9H1C | https://files.rcsb.org/download/9h1c.cif.gz | HYDROLASE | 10/09/24 | 2024-10-09 | Crystal structure of Angiotensin-1 converting enzyme C-domain in complex with dual ACE/NEP inhibitor AD014 | Homo sapiens | Cozier, G.E., Acharya, K.R. | 1.8 | 1.8 | false | X-RAY DIFFRACTION | true | 1 |
9h1d | mmcif/h1/9h1d.cif.gz | 462,023 | 099b6d231f90e8d9e8f6752f4cac6c5a7f65fa87 | https://www.rcsb.org/structure/9H1D | https://files.rcsb.org/download/9h1d.cif.gz | HYDROLASE | 10/09/24 | 2024-10-09 | Crystal structure of Angiotensin-1 converting enzyme C-domain in complex with dual ACE/NEP inhibitor AD015 | Homo sapiens | Cozier, G.E., Acharya, K.R. | 1.8 | 1.8 | false | X-RAY DIFFRACTION | true | 3 |
9h1e | mmcif/h1/9h1e.cif.gz | 473,226 | 1ae15f38f30eecc030474d575217c0184db89296 | https://www.rcsb.org/structure/9H1E | https://files.rcsb.org/download/9h1e.cif.gz | HYDROLASE | 10/09/24 | 2024-10-09 | Crystal structure of Angiotensin-1 converting enzyme C-domain in complex with dual ACE/NEP inhibitor AD016 | Homo sapiens | Cozier, G.E., Acharya, K.R. | 1.45 | 1.45 | false | X-RAY DIFFRACTION | true | 3 |
9h1f | mmcif/h1/9h1f.cif.gz | 145,431 | a638c7bb15ef8dc675c230e1be2d875d3bd89b57 | https://www.rcsb.org/structure/9H1F | https://files.rcsb.org/download/9h1f.cif.gz | PROTEIN BINDING | 10/09/24 | 2024-10-09 | Cofilin-1 in complex with high-affinity Sybody B12 | Homo sapiens; synthetic construct | Paraschiakos, T., Windhorst, S., Pogenberg, V. | 1.8 | 1.8 | false | X-RAY DIFFRACTION | true | 4 |
9h1g | mmcif/h1/9h1g.cif.gz | 895,663 | a1626362b4f8f03eac3b6921f2c4f6e88f301f2a | https://www.rcsb.org/structure/9H1G | https://files.rcsb.org/download/9h1g.cif.gz | VIRAL PROTEIN | 10/09/24 | 2024-10-09 | Structure of the borna disease virus 1 replication complex | Borna disease virus 1 | Keown, J.R., Carrique, L., Grimes, J.M. | 3.07 | 3.07 | false | ELECTRON MICROSCOPY | true | 6 |
9h1h | mmcif/h1/9h1h.cif.gz | 340,862 | 31b422e9101f08578f2db1690a415694fe1e9936 | https://www.rcsb.org/structure/9H1H | https://files.rcsb.org/download/9h1h.cif.gz | DNA BINDING PROTEIN | 10/09/24 | 2024-10-09 | Cas1-Cas2 CRISPR integrase bound to prespacer DNA, Streptococcus thermophilus DGCC 7710 CRISPR3 system | Streptococcus thermophilus DGCC 7710; SYNTHETIC CONSTRUCT | Sasnauskas, G., Gaizauskaite, U., Tamulaitiene, G. | 3.06 | 3.06 | false | ELECTRON MICROSCOPY | true | 8 |
9h1j | mmcif/h1/9h1j.cif.gz | 305,902 | ddf3796893b5dd4d540724ec0d2dce4d5a96fd7d | https://www.rcsb.org/structure/9H1J | https://files.rcsb.org/download/9h1j.cif.gz | PROTEIN TRANSPORT | 10/09/24 | 2024-10-09 | Crystal structure of the p62 UBA domain bound to VHH 6C10 | Homo sapiens; Lama glama | Gutmann, S., Villard, F. | 1.73 | 1.73 | false | X-RAY DIFFRACTION | true | 2 |
9h1k | mmcif/h1/9h1k.cif.gz | 164,470 | 81b436b6fddb3a940aa446c37b30452d85e76577 | https://www.rcsb.org/structure/9H1K | https://files.rcsb.org/download/9h1k.cif.gz | TRANSFERASE | 10/09/24 | 2024-10-09 | RlmR 23S rRNA methyltransferase from Thermus thermophilus in complex with rRNA and S-adenosyl-L-homocysteine (SAH) | Thermus thermophilus HB27 | Tanouti, Y., Roovers, M., Droogmans, L., Van Elder, D., Kruys, V., Labar, G. | 1.895 | 1.895 | false | X-RAY DIFFRACTION | true | 9 |
9h1l | mmcif/h1/9h1l.cif.gz | 831,460 | 8f7be47052f47c22bb5bfad35dcd205eefd8a3c1 | https://www.rcsb.org/structure/9H1L | https://files.rcsb.org/download/9h1l.cif.gz | OXIDOREDUCTASE | 10/09/24 | 2024-10-09 | Methyl-coenzyme M reductase activation complex binding to the A2 component after incubation with ATP | Methanococcus maripaludis | Ramirez-Amador, F., Paul, S., Kumar, A., Schuller, J.M. | 2.14 | 2.14 | false | ELECTRON MICROSCOPY | true | 1 |
9h1m | mmcif/h1/9h1m.cif.gz | 139,811 | b0765a0bc7c99630f88faea34710b4faf9fe0bc3 | https://www.rcsb.org/structure/9H1M | https://files.rcsb.org/download/9h1m.cif.gz | OXIDOREDUCTASE | 10/09/24 | 2024-10-09 | Recombinant ferric horseradish peroxidase C1A | Armoracia rusticana | Nesa, M.L., Mandal, S.K., Toelzer, C., Humer, D., Moody, P.C.E., Berger, I., Spadiut, O., Raven, E.L. | 1.63 | 1.63 | false | X-RAY DIFFRACTION | true | 5 |
9h1n | mmcif/h1/9h1n.cif.gz | 56,100 | ba56387b10f49c97d35e869d0bf6f2e4a6d9c45e | https://www.rcsb.org/structure/9H1N | https://files.rcsb.org/download/9h1n.cif.gz | PROTEIN BINDING | 10/09/24 | 2024-10-09 | Dihydrolipoamide Acetyltransferase (E2) PSBD in complex with the Pyruvate Dehydrogenase (E1) binding domain from E. coli | Escherichia coli | Bothe, S.N., Racunica, D., Glockshuber, R. | 1.54 | 1.54 | false | X-RAY DIFFRACTION | true | 5 |
9h1o | mmcif/h1/9h1o.cif.gz | 996,967 | d879b2d47e94e082a409c09448a7541b6ad60346 | https://www.rcsb.org/structure/9H1O | https://files.rcsb.org/download/9h1o.cif.gz | SIGNALING PROTEIN | 10/09/24 | 2024-10-09 | Cryo-EM structure of taxol-microtubules in complex with the C1 domain of GEFH1 | Bos taurus; Homo sapiens | Choi, S.R., Blum, T., Steinmetz, M.O. | 3.4 | 3.4 | false | ELECTRON MICROSCOPY | true | 7 |
9h1p | mmcif/h1/9h1p.cif.gz | 271,176 | 95a90109e9b3b7ed2087de0a19791c44dfb86b1a | https://www.rcsb.org/structure/9H1P | https://files.rcsb.org/download/9h1p.cif.gz | VIRAL PROTEIN | 10/10/24 | 2024-10-10 | Mature HIV-1 matrix from MA-SP1 cleavage mutant | Human immunodeficiency virus type 1 group M subtype B (isolate NY5) | Stacey, J.C.V., Hrebik, D., Briggs, J.A.G. | 3.1 | 3.1 | false | ELECTRON MICROSCOPY | true | 8 |
9h1q | mmcif/h1/9h1q.cif.gz | 661,803 | 95fc71103aa891b25bc0fd95fb915d2acd0536d3 | https://www.rcsb.org/structure/9H1Q | https://files.rcsb.org/download/9h1q.cif.gz | VIRAL PROTEIN | 10/10/24 | 2024-10-10 | Structure of the borna disease virus 1 replication core complex - reaction complex | Borna disease virus 1 | Keown, J.R., Carrique, L., Grimes, J.M. | 2.95 | 2.95 | false | ELECTRON MICROSCOPY | true | 7 |
9h1s | mmcif/h1/9h1s.cif.gz | 136,218 | 714be7f16c9e8c7b44517ef10606c6a7baab404e | https://www.rcsb.org/structure/9H1S | https://files.rcsb.org/download/9h1s.cif.gz | VIRUS | 10/10/24 | 2024-10-10 | AcMNPV helical nucleocapsid | Autographa californica nucleopolyhedrovirus | Effantin, G., Kandiah, E., Pelosse, M. | 3.0 | 3 | false | ELECTRON MICROSCOPY | true | 3 |
9h1t | mmcif/h1/9h1t.cif.gz | 167,066 | fbf508a7b43f7bf2b6ca623f20e2a2651ed47ce2 | https://www.rcsb.org/structure/9H1T | https://files.rcsb.org/download/9h1t.cif.gz | METAL BINDING PROTEIN | 10/10/24 | 2024-10-10 | Crystal structure of apo-tyrosinase from Priestia megaterium F227Y mutant | Priestia megaterium | Englund, A.N.B., Rohr, A.K. | 2.14 | 2.14 | false | X-RAY DIFFRACTION | true | 5 |
9h1u | mmcif/h1/9h1u.cif.gz | 704,825 | 1d5688c829034c46bfbbbb89d0c7221b9462ffee | https://www.rcsb.org/structure/9H1U | https://files.rcsb.org/download/9h1u.cif.gz | METAL BINDING PROTEIN | 10/10/24 | 2024-10-10 | Cryo-EM structure of Heterooligomeric Bacterioferritin | Magnetospirillum gryphiswaldense MSR-1 | Stein, D., Zalk, R., Shahar, A., Zarivach, R., Frank, G.A. | 2.86 | 2.86 | false | ELECTRON MICROSCOPY | true | 9 |
9h1v | mmcif/h1/9h1v.cif.gz | 393,081 | 106ec8430be6d69e00199b34f4962d73c655f75c | https://www.rcsb.org/structure/9H1V | https://files.rcsb.org/download/9h1v.cif.gz | DNA BINDING PROTEIN | 10/10/24 | 2024-10-10 | Cas1-Cas2 CRISPR integrase bound to prespacer and target DNA, Streptococcus thermophilus DGCC 7710 CRISPR3 system | Streptococcus thermophilus DGCC 7710; SYNTHETIC CONSTRUCT | Sasnauskas, G., Gaizauskaite, U., Tamulaitiene, G. | 2.89 | 2.89 | false | ELECTRON MICROSCOPY | true | 6 |
9h1w | mmcif/h1/9h1w.cif.gz | 68,271 | 82c3dfaea8bcc6559c269a05b9cee60e066282ab | https://www.rcsb.org/structure/9H1W | https://files.rcsb.org/download/9h1w.cif.gz | SIGNALING PROTEIN | 10/10/24 | 2024-10-10 | Grouped 150-240 ms dark structure of sensory rhodopsin-II solved by serial millisecond crystallography | Natronomonas pharaonis | Ortolani, G., Bosman, R., Branden, G., Neutze, R. | 2.2 | 2.2 | false | X-RAY DIFFRACTION | true | 1 |
9h1x | mmcif/h1/9h1x.cif.gz | 91,747 | df701cc93be524c02ad85997b65633cc78f8b138 | https://www.rcsb.org/structure/9H1X | https://files.rcsb.org/download/9h1x.cif.gz | SIGNALING PROTEIN | 10/10/24 | 2024-10-10 | Continuously illuminated structure of Sensory Rhodopsin II solved by serial millisecond crystallography | Natronomonas pharaonis | Ortolani, G., Bosman, R., Branden, G., Neutze, R. | 1.85 | 1.85 | false | X-RAY DIFFRACTION | true | 1 |
9h1y | mmcif/h1/9h1y.cif.gz | 870,968 | 9757b4cd21845706795c157c9b8d4deb37ff5434 | https://www.rcsb.org/structure/9H1Y | https://files.rcsb.org/download/9h1y.cif.gz | VIRAL PROTEIN | 10/10/24 | 2024-10-10 | Structure of the borna disease virus 1 replication full-length complex - reaction complex | Borna disease virus 1 | Keown, J.R., Carrique, L., Grimes, J.M. | 3.07 | 3.07 | false | ELECTRON MICROSCOPY | true | 4 |
9h1z | mmcif/h1/9h1z.cif.gz | 285,357 | 952751e9174d49bf3595811c69564cb9634f7240 | https://www.rcsb.org/structure/9H1Z | https://files.rcsb.org/download/9h1z.cif.gz | RNA BINDING PROTEIN | 10/10/24 | 2024-10-10 | Cryo-EM Structure of human OAS2 Dimer | Homo sapiens | Merold, V.R., Lammens, K., de Oliveira Mann, C.C. | 3.3 | 3.3 | false | ELECTRON MICROSCOPY | true | 9 |
9h20 | mmcif/h2/9h20.cif.gz | 74,295 | 16308e2b3537ab52d7d0fc5a0d607e861bb69502 | https://www.rcsb.org/structure/9H20 | https://files.rcsb.org/download/9h20.cif.gz | SIGNALING PROTEIN | 10/10/24 | 2024-10-10 | Continuous dark state structure of Sensory Rhodopsin II solved by serial millisecond crystallography | Natronomonas pharaonis | Ortolani, G., Bosman, R., Branden, G., Neutze, R. | 2.2 | 2.2 | false | X-RAY DIFFRACTION | true | 8 |
9h21 | mmcif/h2/9h21.cif.gz | 356,205 | df8329cdcf3312cbb20cc00c2e600fd6165a2dd6 | https://www.rcsb.org/structure/9H21 | https://files.rcsb.org/download/9h21.cif.gz | RNA BINDING PROTEIN | 10/10/24 | 2024-10-10 | Cas9 in complex with tracrRNA and crRNA, Streptococcus thermophilus DGCC 7710 CRISPR3 system | Streptococcus thermophilus DGCC 7710; SYNTHETIC CONSTRUCT | Sasnauskas, G., Gaizauskaite, U., Tamulaitiene, G. | 3.33 | 3.33 | false | ELECTRON MICROSCOPY | true | 9 |
9h22 | mmcif/h2/9h22.cif.gz | 1,520,387 | 1e52ccb917d3b64397e593e9712c0baee37668c0 | https://www.rcsb.org/structure/9H22 | https://files.rcsb.org/download/9h22.cif.gz | PHOTOSYNTHESIS | 10/10/24 | 2024-10-10 | Cryo EM structure of RC-dLH complex model II from Gemmatimonas groenlandica | Gemmatimonas groenlandica | Gardiner, A.T., Jing, Y., Bina, D., Mujakic, I., Gardian, Z., Kaftan, D., Joosten, M., Jakobi, A., Castro-Hartmann, P., Qian, P., Koblizek, M. | 2.3 | 2.3 | false | ELECTRON MICROSCOPY | true | 7 |
9h24 | mmcif/h2/9h24.cif.gz | 66,016 | e6275709cb8eb438f3ae778e04773b7a1eaa0dbf | https://www.rcsb.org/structure/9H24 | https://files.rcsb.org/download/9h24.cif.gz | PLANT PROTEIN | 10/10/24 | 2024-10-10 | Crystal structure of MtCERK1 extracellular domain | Medicago truncatula | Hansen, S.B., Gysel, K., Andersen, K.R. | 2.98 | 2.98 | false | X-RAY DIFFRACTION | true | 7 |
9h26 | mmcif/h2/9h26.cif.gz | 72,671 | 7915aa2fd830d171389953ae279bd0c769309e34 | https://www.rcsb.org/structure/9H26 | https://files.rcsb.org/download/9h26.cif.gz | FLUORESCENT PROTEIN | 10/11/24 | 2024-10-11 | Structure of rsCherry exposed to oxygen for 69 days | Discosoma sp. | Bui, T.Y.H., Van Meervelt, L. | 1.65 | 1.65 | false | X-RAY DIFFRACTION | true | 4 |
9h27 | mmcif/h2/9h27.cif.gz | 71,777 | 1fdd1ebdce60c5dc5100a5e1f548cabce372a1b7 | https://www.rcsb.org/structure/9H27 | https://files.rcsb.org/download/9h27.cif.gz | FLUORESCENT PROTEIN | 10/11/24 | 2024-10-11 | Structure of rsCherry exposed to oxygen for 90 days | Discosoma sp. | Bui, T.Y.H., Van Meervelt, L. | 1.7 | 1.7 | false | X-RAY DIFFRACTION | true | 8 |
9h28 | mmcif/h2/9h28.cif.gz | 569,484 | 41813609b996c82b1d8d748700ff1db742234baf | https://www.rcsb.org/structure/9H28 | https://files.rcsb.org/download/9h28.cif.gz | VIRUS | 10/11/24 | 2024-10-11 | Alternative conformation LGTV with TBEV prME | Langat virus (strain TP21); tick-borne encephalitis virus-European subtype | Bisikalo, K., Rosendal, E. | 3.22 | 3.22 | false | ELECTRON MICROSCOPY | true | 6 |
9h29 | mmcif/h2/9h29.cif.gz | 167,901 | fc5d20ad33850d7d6557de99aee087f19dd809df | https://www.rcsb.org/structure/9H29 | https://files.rcsb.org/download/9h29.cif.gz | METAL BINDING PROTEIN | 10/11/24 | 2024-10-11 | Crystal structure of tyrosinase from Priestia megaterium F227Y mutant soaked in Cu(II) | Priestia megaterium | Englund, A.N.B., Rohr, A.K. | 2.17 | 2.17 | false | X-RAY DIFFRACTION | true | 8 |
9h2a | mmcif/h2/9h2a.cif.gz | 1,528,735 | 9e2829fc3b8765089ccaeb26f3343e034f4b1e34 | https://www.rcsb.org/structure/9H2A | https://files.rcsb.org/download/9h2a.cif.gz | VIRUS | 10/11/24 | 2024-10-11 | AcMNPV complete basal cap | Autographa californica nucleopolyhedrovirus | Effantin, G., Kandiah, E., Pelosse, M. | 5.2 | 5.2 | false | ELECTRON MICROSCOPY | true | 7 |
9h2b | mmcif/h2/9h2b.cif.gz | 700,751 | c190aeec4572b893e61102640a9fa104bd9ef19e | https://www.rcsb.org/structure/9H2B | https://files.rcsb.org/download/9h2b.cif.gz | VIRUS | 10/11/24 | 2024-10-11 | AcMNPV basal cap - C14 anchor complex only | Autographa californica nucleopolyhedrovirus | Effantin, G., Kandiah, E., Pelosse, M. | 4.1 | 4.1 | false | ELECTRON MICROSCOPY | true | 1 |
9h2c | mmcif/h2/9h2c.cif.gz | 174,212 | b9dc47254d2970da42c036e05f5ca1e74bff6801 | https://www.rcsb.org/structure/9H2C | https://files.rcsb.org/download/9h2c.cif.gz | VIRUS | 10/11/24 | 2024-10-11 | AcMNPV basal cap - C7 plug only | Autographa californica nucleopolyhedrovirus | Effantin, G., Kandiah, E., Pelosse, M. | 3.4 | 3.4 | false | ELECTRON MICROSCOPY | true | 5 |
9h2d | mmcif/h2/9h2d.cif.gz | 239,787 | 8ae2a082eeaa1564d3fa14a0d0e30e9c03b3b587 | https://www.rcsb.org/structure/9H2D | https://files.rcsb.org/download/9h2d.cif.gz | PROTEIN TRANSPORT | 10/11/24 | 2024-10-11 | Human IFT172 C-terminal U-box domain crystal structure | Homo sapiens | Lorentzen, E., Zacharia, N.K., Bhogaraju, S. | 2.097 | 2.097 | false | X-RAY DIFFRACTION | true | 8 |
9h2g | mmcif/h2/9h2g.cif.gz | 395,074 | c2b28dd20dc95e7f22294635af29fc0b6e7fcc74 | https://www.rcsb.org/structure/9H2G | https://files.rcsb.org/download/9h2g.cif.gz | DNA BINDING PROTEIN | 10/11/24 | 2024-10-11 | Cas9:crRNA:tracrRNA in complex with PAM-containing non-cognate DNA, PAM-bound conformation, Streptococcus thermophilus DGCC 7710 CRISPR3 system | Streptococcus thermophilus DGCC 7710; SYNTHETIC CONSTRUCT | Sasnauskas, G., Gaizauskaite, U., Tamulaitiene, G. | 3.28 | 3.28 | false | ELECTRON MICROSCOPY | true | 4 |
9h2h | mmcif/h2/9h2h.cif.gz | 890,020 | 50c6fd4da0ce4a2d3201c400f33b12009dc3fbfb | https://www.rcsb.org/structure/9H2H | https://files.rcsb.org/download/9h2h.cif.gz | VIRUS | 10/11/24 | 2024-10-11 | AcMNPV apical cap - composite map of the C2 plug | Autographa californica nucleopolyhedrovirus | Effantin, G., Kandiah, E., Pelosse, M. | 6.1 | 6.1 | false | ELECTRON MICROSCOPY | true | 7 |
9h2i | mmcif/h2/9h2i.cif.gz | 266,979 | fdc6ea4f6e74332bb60914a08fb4c7c8b992ffc5 | https://www.rcsb.org/structure/9H2I | https://files.rcsb.org/download/9h2i.cif.gz | FLAVOPROTEIN | 10/11/24 | 2024-10-11 | Dihydrolipoyl Dehydrogenase (E3) in complex with the binding domain of Dihydrolipoamide Acetyltransferase (E2) from the E. coli pyruvate dehydrogenase complex | Escherichia coli | Bothe, S.N., Zajec Hudnik, T., Glockshuber, R. | 1.97 | 1.97 | false | X-RAY DIFFRACTION | true | 3 |
9h2j | mmcif/h2/9h2j.cif.gz | 694,893 | 0dbfdbb242044f51c311e93e44e2eed1f79c4b7c | https://www.rcsb.org/structure/9H2J | https://files.rcsb.org/download/9h2j.cif.gz | VIRUS | 10/11/24 | 2024-10-11 | AcMNPV apical cap - C14 anchor complex only | Autographa californica nucleopolyhedrovirus | Effantin, G., Kandiah, E., Pelosse, M. | 4.7 | 4.7 | false | ELECTRON MICROSCOPY | true | 3 |
9h2k | mmcif/h2/9h2k.cif.gz | 124,873 | becbd7ae60c015b63735115390a79e506e599dcd | https://www.rcsb.org/structure/9H2K | https://files.rcsb.org/download/9h2k.cif.gz | VIRUS | 10/11/24 | 2024-10-11 | AcMNPV apical cap - C21 ring | Autographa californica nucleopolyhedrovirus | Effantin, G., Kandiah, E., Pelosse, M. | 3.5 | 3.5 | false | ELECTRON MICROSCOPY | true | 7 |
9h2l | mmcif/h2/9h2l.cif.gz | 1,203,062 | 9e7e74dd1e76452df804507b03692321a450d813 | https://www.rcsb.org/structure/9H2L | https://files.rcsb.org/download/9h2l.cif.gz | PLANT PROTEIN | 10/11/24 | 2024-10-11 | Cryo-EM structure of an octameric G10-resistosome from wheat | Triticum aestivum | Guo, G.H., Zhao, H., Lukoyanova, N., Selvaraj, M., Jones, J. | 3.95 | 3.95 | false | ELECTRON MICROSCOPY | true | 6 |
9h2m | mmcif/h2/9h2m.cif.gz | 394,226 | 92f53e05334f606d636861d038d8933ca45dcf4b | https://www.rcsb.org/structure/9H2M | https://files.rcsb.org/download/9h2m.cif.gz | DNA BINDING PROTEIN | 10/12/24 | 2024-10-12 | Cas9:crRNA:tracrRNA in complex with PAM-containing non-cognate DNA, PAM-unbound conformation, Streptococcus thermophilus DGCC 7710 CRISPR3 system | Streptococcus thermophilus DGCC 7710; SYNTHETIC CONSTRUCT | Sasnauskas, G., Gaizauskaite, U., Tamulaitiene, G. | 3.06 | 3.06 | false | ELECTRON MICROSCOPY | true | 2 |
9h2n | mmcif/h2/9h2n.cif.gz | 163,381 | e58237b3239b57ed217ab658beeea72fcc28c43d | https://www.rcsb.org/structure/9H2N | https://files.rcsb.org/download/9h2n.cif.gz | METAL BINDING PROTEIN | 10/14/24 | 2024-10-14 | Crystal structure of tyrosinase from Priestia megaterium F227Y mutant soaked in Cu(II) and sodium dithionite | Priestia megaterium | Englund, A.N.B., Rohr, A.K. | 2 | 2 | false | X-RAY DIFFRACTION | true | 7 |
9h2o | mmcif/h2/9h2o.cif.gz | 313,964 | 31330fd4739a3a9ec63603ede3dd57ba09545311 | https://www.rcsb.org/structure/9H2O | https://files.rcsb.org/download/9h2o.cif.gz | METAL BINDING PROTEIN | 10/14/24 | 2024-10-14 | Crystal structure of apo-tyrosinase from Priestia megaterium | Priestia megaterium | Englund, A.N.B., Rohr, A.K. | 1.8 | 1.8 | false | X-RAY DIFFRACTION | true | 4 |
9h2p | mmcif/h2/9h2p.cif.gz | 488,185 | 156d0978661c9b47066d5492241dcfffab8a03b9 | https://www.rcsb.org/structure/9H2P | https://files.rcsb.org/download/9h2p.cif.gz | MEMBRANE PROTEIN | 10/14/24 | 2024-10-14 | YnaI in its open conformation purified in DDM showing ligand-filled pockets | Escherichia coli | Flegler, V.J., Bottcher, B., Rasmussen, T., Rasmussen, A., Hedrich, R. | 2.3 | 2.3 | false | ELECTRON MICROSCOPY | true | 8 |
9h2q | mmcif/h2/9h2q.cif.gz | 153,492 | 5e0d1c8e3bfa3c74e7328a2a503995fa421b9b59 | https://www.rcsb.org/structure/9H2Q | https://files.rcsb.org/download/9h2q.cif.gz | PROTEIN TRANSPORT | 10/14/24 | 2024-10-14 | Stabilized complex of Chlamydia trachomatic efector CT622 in complex with human WD40 domain of ATG16L1 | Chlamydia trachomatis; Escherichia coli O157:H7; Homo sapiens | Zahradnik, J., Kolenko, P. | 3.8 | 3.8 | false | ELECTRON MICROSCOPY | true | 9 |
9h2s | mmcif/h2/9h2s.cif.gz | 460,753 | 9a9924fa16a0f4aa5d918893c315a7440b7511cc | https://www.rcsb.org/structure/9H2S | https://files.rcsb.org/download/9h2s.cif.gz | MEMBRANE PROTEIN | 10/15/24 | 2024-10-15 | a YnaI-MscS chimera in a closed conformation purified in DDM with additional lipids showing ligand-filled pore and pockets | Escherichia coli (strain K12) | Flegler, V.J., Bottcher, B., Rasmussen, T., Rasmussen, A., Hedrich, R. | 2.7 | 2.7 | false | ELECTRON MICROSCOPY | true | 2 |
9h2t | mmcif/h2/9h2t.cif.gz | 115,346 | c4da0541ba98fcd2a8998a00e73f6b8f213f300e | https://www.rcsb.org/structure/9H2T | https://files.rcsb.org/download/9h2t.cif.gz | RNA BINDING PROTEIN | 10/15/24 | 2024-10-15 | Crystal structure of YTHDC1 in complex with AI_04 | Homo sapiens | Bedi, R.K., Caflisch, A. | 1.31 | 1.31 | false | X-RAY DIFFRACTION | true | 4 |
9h2u | mmcif/h2/9h2u.cif.gz | 109,191 | f427e002c820d88d4780f6da29818899053cb0f9 | https://www.rcsb.org/structure/9H2U | https://files.rcsb.org/download/9h2u.cif.gz | RNA BINDING PROTEIN | 10/15/24 | 2024-10-15 | Crystal structure of YTHDC1 in complex with AI_033 | Homo sapiens | Bedi, R.K., Caflisch, A. | 1.21 | 1.21 | false | X-RAY DIFFRACTION | true | 1 |
9h2v | mmcif/h2/9h2v.cif.gz | 457,278 | 588edbe6ed0ab5f527a877c994ddde212dd031cc | https://www.rcsb.org/structure/9H2V | https://files.rcsb.org/download/9h2v.cif.gz | MEMBRANE PROTEIN | 10/15/24 | 2024-10-15 | a YnaI-MscS chimera in an open conformation purified in DDM showing ligand-filled pockets | Escherichia coli (strain K12) | Flegler, V.J., Bottcher, B., Rasmussen, T., Rasmussen, A., Hedrich, R. | 2.8 | 2.8 | false | ELECTRON MICROSCOPY | true | 6 |
9h2w | mmcif/h2/9h2w.cif.gz | 108,826 | 94f65d79995f66bbce419d5da80fc29e199e9088 | https://www.rcsb.org/structure/9H2W | https://files.rcsb.org/download/9h2w.cif.gz | RNA BINDING PROTEIN | 10/15/24 | 2024-10-15 | Crystal structure of YTHDC1 in complex with AI_055 | Homo sapiens | Bedi, R.K., Caflisch, A. | 1.28 | 1.28 | false | X-RAY DIFFRACTION | true | 4 |
9h2x | mmcif/h2/9h2x.cif.gz | 197,531 | 2045eb4e08959c2aeeac38bb79523699d6faf838 | https://www.rcsb.org/structure/9H2X | https://files.rcsb.org/download/9h2x.cif.gz | MEMBRANE PROTEIN | 10/15/24 | 2024-10-15 | Crystal structure of stabilized A2A adenosine receptor A2AR-StaR2-bRIL in complex with compound 7, a novel nanomolar A2A receptor antagonist from modern hit-finding with structure-guided de novo design | Escherichia coli; Homo sapiens | Tian, G., Maja, N. | 1.75 | 1.75 | false | X-RAY DIFFRACTION | true | 1 |
9h2y | mmcif/h2/9h2y.cif.gz | 104,819 | d294556b51fc41c7aa9143d4bbbd990879719e05 | https://www.rcsb.org/structure/9H2Y | https://files.rcsb.org/download/9h2y.cif.gz | RNA BINDING PROTEIN | 10/15/24 | 2024-10-15 | Crystal structure of YTHDC1 in complex with AI_056 | Homo sapiens | Bedi, R.K., Caflisch, A. | 1.24 | 1.24 | false | X-RAY DIFFRACTION | true | 7 |
9h2z | mmcif/h2/9h2z.cif.gz | 138,094 | c447ffefc2f50b4270e2a2483c0869b4418ad732 | https://www.rcsb.org/structure/9H2Z | https://files.rcsb.org/download/9h2z.cif.gz | TRANSFERASE | 10/15/24 | 2024-10-15 | Crystal structure of APH(2"")-IVa alternate (soaking with EK3-18 inhibitor) | Enterococcus casseliflavus | Kaplan, E., Guichou, J.-F., Gelin, M., Chaloin, L., Lionne, C. | 2.4 | 2.4 | false | X-RAY DIFFRACTION | true | 8 |
9h30 | mmcif/h3/9h30.cif.gz | 272,387 | 0fa32cb1ca313d2bf9fd7a1ac91f284624b35cf1 | https://www.rcsb.org/structure/9H30 | https://files.rcsb.org/download/9h30.cif.gz | LIGASE | 10/15/24 | 2024-10-15 | VHL:ElonginC:ElonginB-PROTAC4 complex | Homo sapiens | Maiocchi, A., Abel, A.-C., Steinmetz, M.O., Passarella, D., Prota, A.E. | 2.5 | 2.5 | false | X-RAY DIFFRACTION | true | 9 |
9h31 | mmcif/h3/9h31.cif.gz | 1,049,573 | 88309bee756ddf118ea557a288fa789b6ca06cce | https://www.rcsb.org/structure/9H31 | https://files.rcsb.org/download/9h31.cif.gz | CELL CYCLE | 10/15/24 | 2024-10-15 | T2R-TTL-PROTAC4 complex | Bos taurus; Gallus gallus; Rattus norvegicus | Maiocchi, A., Abel, A.-C., Steinmetz, M.O., Passarella, D., Prota, A.E. | 2.2 | 2.2 | false | X-RAY DIFFRACTION | true | 1 |
9h32 | mmcif/h3/9h32.cif.gz | 1,038,201 | ca886060139a299f0e014657f45849df994fbab6 | https://www.rcsb.org/structure/9H32 | https://files.rcsb.org/download/9h32.cif.gz | CELL CYCLE | 10/15/24 | 2024-10-15 | T2R-TTL-PROTAC3 complex | Bos taurus; Gallus gallus; Rattus norvegicus | Maiocchi, A., Abel, A.-C., Boiarska, Z., Steinmetz, M.O., Passarella, D., Prota, A.E. | 2.31 | 2.31 | false | X-RAY DIFFRACTION | true | 7 |
9h33 | mmcif/h3/9h33.cif.gz | 1,112,224 | 36b13cb0dfe71e498ddcdb81aa17f292bf8396cd | https://www.rcsb.org/structure/9H33 | https://files.rcsb.org/download/9h33.cif.gz | CELL CYCLE | 10/15/24 | 2024-10-15 | T2R-TTL-PROTAC2 complex | Bos taurus; Gallus gallus; Rattus norvegicus | Maiocchi, A., Abel, A.-C., Boiarska, Z., Steinmetz, M.O., Passarella, D., Prota, A.E. | 2.3 | 2.3 | false | X-RAY DIFFRACTION | true | 1 |
9h34 | mmcif/h3/9h34.cif.gz | 1,058,617 | fea75e2401c14f10b3a828528f5526e913378c49 | https://www.rcsb.org/structure/9H34 | https://files.rcsb.org/download/9h34.cif.gz | CELL CYCLE | 10/15/24 | 2024-10-15 | T2R-TTL-PROTAC1 complex | Bos taurus; Gallus gallus; Rattus norvegicus | Maiocchi, A., Abel, A.-C., Steinmetz, M.O., Passarella, D., Prota, A.E. | 2.3 | 2.3 | false | X-RAY DIFFRACTION | true | 1 |
9h35 | mmcif/h3/9h35.cif.gz | 143,275 | 2b19b31983698e2af19d361657ca466498e56eb3 | https://www.rcsb.org/structure/9H35 | https://files.rcsb.org/download/9h35.cif.gz | RNA BINDING PROTEIN | 10/15/24 | 2024-10-15 | Crystal structure of the YTHDC2 YTH domain | Homo sapiens | Bedi, R.K., Caflisch, A. | 2.68 | 2.68 | false | X-RAY DIFFRACTION | true | 4 |
9h36 | mmcif/h3/9h36.cif.gz | 77,092 | 24dac1d20d560c6231d01568d8dce016beb4b860 | https://www.rcsb.org/structure/9H36 | https://files.rcsb.org/download/9h36.cif.gz | RNA BINDING PROTEIN | 10/15/24 | 2024-10-15 | Crystal structure of the YTHDC2 YTH domain | Homo sapiens | Bedi, R.K., Caflisch, A. | 2.62 | 2.62 | false | X-RAY DIFFRACTION | true | 9 |
9h37 | mmcif/h3/9h37.cif.gz | 197,450 | 3c8f3fa954c1c512eb07d0fc92a7e05e3db82e66 | https://www.rcsb.org/structure/9H37 | https://files.rcsb.org/download/9h37.cif.gz | MEMBRANE PROTEIN | 10/15/24 | 2024-10-15 | Crystal structure of stabilized A2A adenosine receptor A2AR-StaR2-bRIL in complex with compound 9, a novel nanomolar A2A receptor antagonist from modern hit-finding with structure-guided de novo design | Escherichia coli; Homo sapiens | Tian, G., Maja, N. | 1.715 | 1.715 | false | X-RAY DIFFRACTION | true | 3 |
9h38 | mmcif/h3/9h38.cif.gz | 1,328,854 | f128da4c957630b774b7a6621e5eabafd94341f1 | https://www.rcsb.org/structure/9H38 | https://files.rcsb.org/download/9h38.cif.gz | STRUCTURAL PROTEIN | 10/16/24 | 2024-10-16 | C-terminal domain of the F-ENA tip fibrillum F-BclA from Bacillus thuringiensis | Bacillus thuringiensis | Sogues, A., Sleutel, M., Remaut, H. | 2.29 | 2.29 | false | X-RAY DIFFRACTION | true | 8 |
9h39 | mmcif/h3/9h39.cif.gz | 377,518 | a7bfbd493b32a0ee92d050d0ea87053cd3f29b3c | https://www.rcsb.org/structure/9H39 | https://files.rcsb.org/download/9h39.cif.gz | PLANT PROTEIN | 10/16/24 | 2024-10-16 | Crystal structure of Lotus japonicus CHIP13 extracellular domain in complex with a nanobody | Lama glama; Lotus japonicus | Gysel, K., Andersen, K.R. | 1.66 | 1.66 | false | X-RAY DIFFRACTION | true | 3 |
9h3a | mmcif/h3/9h3a.cif.gz | 199,593 | d65162858753017eb19a4ddcf5ecab4352cdb9b5 | https://www.rcsb.org/structure/9H3A | https://files.rcsb.org/download/9h3a.cif.gz | PLANT PROTEIN | 10/16/24 | 2024-10-16 | Crystal structure of Lotus japonicus CHIP13 extracellular domain in complex with chitooctaose | Lotus japonicus | Gysel, K., Andersen, K.R. | 1.35 | 1.35 | false | X-RAY DIFFRACTION | true | 8 |
9h3b | mmcif/h3/9h3b.cif.gz | 121,178 | cdb8c813a98ce42c98ec9b481fea37e468cb1927 | https://www.rcsb.org/structure/9H3B | https://files.rcsb.org/download/9h3b.cif.gz | PLANT PROTEIN | 10/16/24 | 2024-10-16 | Lotus japonicus CERK6 extracellular domain in complex with chitopentaose | Lotus japonicus | Hansen, S.B., Gysel, K., Andersen, K.R. | 2.58 | 2.58 | false | X-RAY DIFFRACTION | true | 1 |
9h3c | mmcif/h3/9h3c.cif.gz | 56,133 | 546aedf991cfc7e772ce461083c361bc96a6e98c | https://www.rcsb.org/structure/9H3C | https://files.rcsb.org/download/9h3c.cif.gz | DE NOVO PROTEIN | 10/16/24 | 2024-10-16 | De novo designed alpha helical toroidal protein with a Ru-cofactor | synthetic construct | Zhang, K., Ward, T.R. | 2.9 | 2.9 | false | X-RAY DIFFRACTION | true | 5 |
9h3d | mmcif/h3/9h3d.cif.gz | 469,905 | ba8fd3566c194e534d1a61283f57fbffa7d90e55 | https://www.rcsb.org/structure/9H3D | https://files.rcsb.org/download/9h3d.cif.gz | STRUCTURAL PROTEIN | 10/16/24 | 2024-10-16 | F-ENA exosporium anchoring complex between ExsF and a peptide derived from the N-terminus of F-Anchor | Bacillus thuringiensis; SYNTHETIC CONSTRUCT | Sogues, A., Sleutel, M., Remaut, H. | 1.92 | 1.92 | false | X-RAY DIFFRACTION | true | 5 |
9h3e | mmcif/h3/9h3e.cif.gz | 79,375 | 45b9a624252b05ed067436eee2ad0325a729cae1 | https://www.rcsb.org/structure/9H3E | https://files.rcsb.org/download/9h3e.cif.gz | HYDROLASE | 10/16/24 | 2024-10-16 | Hen egg white lysozyme crystallization and structure determination at room temperature in the CrystalChip | Gallus gallus | Pachl, P., Coudray, L., VIncent, R., Sauter, C. | 1.5 | 1.5 | false | X-RAY DIFFRACTION | true | 1 |
9h3f | mmcif/h3/9h3f.cif.gz | 268,661 | ce8c0d4ec9fbbe61af49ee31432644f80f6904b8 | https://www.rcsb.org/structure/9H3F | https://files.rcsb.org/download/9h3f.cif.gz | DNA BINDING PROTEIN | 10/16/24 | 2024-10-16 | Cryo-EM structure of YhaM | Bacillus subtilis | Pane-Farre, J., Madej, M.G., Fu, L., Ziegler, C., Hinrichs, R. | 3.47 | 3.47 | false | ELECTRON MICROSCOPY | true | 1 |
9h3h | mmcif/h3/9h3h.cif.gz | 78,423 | fc745ce23f24d6a978b15dbbd9596083e30c87ac | https://www.rcsb.org/structure/9H3H | https://files.rcsb.org/download/9h3h.cif.gz | LYASE | 10/16/24 | 2024-10-16 | Human Carbonic anhydrase II crystallization and structure determination at room temperature in the CrystalChip | Homo sapiens | Pachl, P., Coudray, L., Rezacova, P., Fejfarova, A., Vincent, R., Engilberge, S., Sauter, C. | 1.8 | 1.8 | false | X-RAY DIFFRACTION | true | 6 |
9h3i | mmcif/h3/9h3i.cif.gz | 427,952 | 5eb1b977e1066aaed16773dce99264e4d5406115 | https://www.rcsb.org/structure/9H3I | https://files.rcsb.org/download/9h3i.cif.gz | BIOSYNTHETIC PROTEIN | 10/16/24 | 2024-10-16 | trans-aconitate decarboxylase Tad1- wild type | Mycosarcoma maydis | Zheng, L., Bang, G. | 2.31 | 2.31 | false | X-RAY DIFFRACTION | true | 5 |
9h3j | mmcif/h3/9h3j.cif.gz | 722,622 | 4176baf42969c34f7da4de6470896b6362380ced | https://www.rcsb.org/structure/9H3J | https://files.rcsb.org/download/9h3j.cif.gz | VIRAL PROTEIN | 10/17/24 | 2024-10-17 | Porcine hemagglutinating encephalomyelitis virus (PHEV) Spike in the closed conformation, apo state | Porcine hemagglutinating encephalomyelitis virus | Fernandez, I., Rey, F.A. | 3.5 | 3.5 | false | ELECTRON MICROSCOPY | true | 5 |
9h3k | mmcif/h3/9h3k.cif.gz | 902,878 | 8be8a16bb4f42d52dcc871f1a5088bbe3ae5b54c | https://www.rcsb.org/structure/9H3K | https://files.rcsb.org/download/9h3k.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor d126_(L29)-/(L22)- | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 6.62 | 6.62 | false | ELECTRON MICROSCOPY | true | 6 |
9h3l | mmcif/h3/9h3l.cif.gz | 1,237,551 | 7c806c874bb194aba988a5c2e7fa2c3241cbce41 | https://www.rcsb.org/structure/9H3L | https://files.rcsb.org/download/9h3l.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C_(L29)-/(L22)- | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 5.84 | 5.84 | false | ELECTRON MICROSCOPY | true | 1 |
9h3m | mmcif/h3/9h3m.cif.gz | 1,228,237 | 0711155e161e340c629618939faa65b065044b78 | https://www.rcsb.org/structure/9H3M | https://files.rcsb.org/download/9h3m.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C_(L22)- | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 4.41 | 4.41 | false | ELECTRON MICROSCOPY | true | 1 |
9h3n | mmcif/h3/9h3n.cif.gz | 1,217,396 | d66ca3893d0dcc2abb85b2a9eb739b2659f43640 | https://www.rcsb.org/structure/9H3N | https://files.rcsb.org/download/9h3n.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C_(L22)-~H61 | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 3.69 | 3.69 | false | ELECTRON MICROSCOPY | true | 6 |
9h3o | mmcif/h3/9h3o.cif.gz | 1,378,895 | 55a41304f73f7456d6c7dc9170996e715d1a7169 | https://www.rcsb.org/structure/9H3O | https://files.rcsb.org/download/9h3o.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C_(L22)-_GAC | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 4.54 | 4.54 | false | ELECTRON MICROSCOPY | true | 7 |
9h3p | mmcif/h3/9h3p.cif.gz | 1,627,094 | 340cf22e3f61517aa86bc0d788f9f7db5fc53264 | https://www.rcsb.org/structure/9H3P | https://files.rcsb.org/download/9h3p.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C-CP_(L22)- | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 7.06 | 7.06 | false | ELECTRON MICROSCOPY | true | 7 |
9h3q | mmcif/h3/9h3q.cif.gz | 1,721,698 | 17d4cfe2c3deed3f2cee3fe6b9173ee010e49641 | https://www.rcsb.org/structure/9H3Q | https://files.rcsb.org/download/9h3q.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C-CP_YjgA_(L22)-~H61 | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 4.02 | 4.02 | false | ELECTRON MICROSCOPY | true | 3 |
9h3r | mmcif/h3/9h3r.cif.gz | 1,771,796 | 9734c72fa628d34b5d688431ae61af56c26e5304 | https://www.rcsb.org/structure/9H3R | https://files.rcsb.org/download/9h3r.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C-CP_YjgA_(L22)- | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 4.12 | 4.12 | false | ELECTRON MICROSCOPY | true | 8 |
9h3s | mmcif/h3/9h3s.cif.gz | 1,874,968 | 2191267df7dfa8eeacf6da5b7715cb88a2719de9 | https://www.rcsb.org/structure/9H3S | https://files.rcsb.org/download/9h3s.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C-CP_YjgA_L22 | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 4.16 | 4.16 | false | ELECTRON MICROSCOPY | true | 4 |
9h3t | mmcif/h3/9h3t.cif.gz | 1,511,629 | e3ff616bb90af21218d1dd0a3541f7c86f1f2d01 | https://www.rcsb.org/structure/9H3T | https://files.rcsb.org/download/9h3t.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C_L2 | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 3.85 | 3.85 | false | ELECTRON MICROSCOPY | true | 4 |
9h3u | mmcif/h3/9h3u.cif.gz | 1,646,493 | 0479e28d98b583f24bcce4b1629cbab780a4997a | https://www.rcsb.org/structure/9H3U | https://files.rcsb.org/download/9h3u.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C_H68 | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 3.47 | 3.47 | false | ELECTRON MICROSCOPY | true | 2 |
9h3v | mmcif/h3/9h3v.cif.gz | 1,735,294 | 17f7f8fed651fc622457846aa531c6946f835b7b | https://www.rcsb.org/structure/9H3V | https://files.rcsb.org/download/9h3v.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C-CP_L2-L28 | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 3.55 | 3.55 | false | ELECTRON MICROSCOPY | true | 8 |
9h3w | mmcif/h3/9h3w.cif.gz | 1,810,538 | 57dbd289ccc4e503089b68846396a8e2b3a075a3 | https://www.rcsb.org/structure/9H3W | https://files.rcsb.org/download/9h3w.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C-CP_H68 | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 5.38 | 5.38 | false | ELECTRON MICROSCOPY | true | 7 |
9h3x | mmcif/h3/9h3x.cif.gz | 1,826,706 | a0087bcdca42ea798b81d1efd4ca31776b1629ec | https://www.rcsb.org/structure/9H3X | https://files.rcsb.org/download/9h3x.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor C-CP_H68_L35 | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 4.12 | 4.12 | false | ELECTRON MICROSCOPY | true | 8 |
9h3y | mmcif/h3/9h3y.cif.gz | 2,003,883 | c5c0b16301386ff95f0efd17e37f62b9db718c4f | https://www.rcsb.org/structure/9H3Y | https://files.rcsb.org/download/9h3y.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | 50S subunit precursor 50S_(L16)- | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 3.09 | 3.09 | false | ELECTRON MICROSCOPY | true | 2 |
9h3z | mmcif/h3/9h3z.cif.gz | 2,039,172 | c3c43c7efeecddc1678e714172faccf44d72d4a8 | https://www.rcsb.org/structure/9H3Z | https://files.rcsb.org/download/9h3z.cif.gz | RIBOSOME | 10/17/24 | 2024-10-17 | mature 50S subunit | Escherichia coli | Lauer, S., Nikolay, R., Spahn, C.M.T. | 2.98 | 2.98 | false | ELECTRON MICROSCOPY | true | 1 |
9h40 | mmcif/h4/9h40.cif.gz | 237,677 | a39b49baddc65798c75a88d751405fd1a0aa3b27 | https://www.rcsb.org/structure/9H40 | https://files.rcsb.org/download/9h40.cif.gz | FLAVOPROTEIN | 10/17/24 | 2024-10-17 | Pinoresinol hydroxylase from Pseudomonas sp. | Pseudomonas sp. | Guerriere, T.B., Mattevi, A. | 1.8 | 1.8 | false | X-RAY DIFFRACTION | true | 7 |
9h41 | mmcif/h4/9h41.cif.gz | 43,764 | 5dc49cd1d3356fc96cc4303a636ebb347634832a | https://www.rcsb.org/structure/9H41 | https://files.rcsb.org/download/9h41.cif.gz | PHOTOSYNTHESIS | 10/17/24 | 2024-10-17 | Apo-Helical Carotenoid Protein 4 (HCP4) from Anabaena G152C mutant | Nostoc sp. (strain PCC 7120 / SAG 25.82 / UTEX 2576) | Sklyar, J., Adir, N. | 3.09 | 3.09 | false | X-RAY DIFFRACTION | true | 5 |
9h42 | mmcif/h4/9h42.cif.gz | 148,366 | e8c0a8ea8ab3ef441e462ec2db13bef17f7c2bd0 | https://www.rcsb.org/structure/9H42 | https://files.rcsb.org/download/9h42.cif.gz | TRANSFERASE | 10/17/24 | 2024-10-17 | EGFR wild type incomplex with 26007 | Homo sapiens | Pintar, S., Martin, M.P., Noble, M.E.M. | 2.601 | 2.601 | false | X-RAY DIFFRACTION | true | 2 |
9h45 | mmcif/h4/9h45.cif.gz | 109,004 | 1280908a65846fecc47468669025ecdd28d02d0a | https://www.rcsb.org/structure/9H45 | https://files.rcsb.org/download/9h45.cif.gz | HYDROLASE | 10/17/24 | 2024-10-17 | Crystal Structure of Hfq V22A | Escherichia coli (strain K12); SYNTHETIC CONSTRUCT | McQuail, J., Krepl, M., Katsuya-Gaviria, K., Tabib-Salazar, A., Burchell, L., Bischler, T., Grafenhan, T., Brear, P., Sponer, J., Luisi, B. | 2.08 | 2.08 | false | X-RAY DIFFRACTION | true | 6 |
9h46 | mmcif/h4/9h46.cif.gz | 139,752 | 9e95e37f04525f1d0a72ae4ac0538231f79506a4 | https://www.rcsb.org/structure/9H46 | https://files.rcsb.org/download/9h46.cif.gz | TRANSFERASE | 10/17/24 | 2024-10-17 | EGFR wild type in complex with 25328 | Homo sapiens | Pintar, S., Martin, M.P., Noble, M.E.M. | 3.163 | 3.163 | false | X-RAY DIFFRACTION | true | 2 |
9h47 | mmcif/h4/9h47.cif.gz | 147,730 | 5b22a01788f946212525a70cad6839d48017febe | https://www.rcsb.org/structure/9H47 | https://files.rcsb.org/download/9h47.cif.gz | TRANSFERASE | 10/17/24 | 2024-10-17 | EGFR wild type in complex with 26313 | Homo sapiens | Pintar, S., Martin, M.P., Noble, M.E.M. | 2.991 | 2.991 | false | X-RAY DIFFRACTION | true | 9 |
9h48 | mmcif/h4/9h48.cif.gz | 151,696 | 458d6632e54d7b20c5142d763e68565836784944 | https://www.rcsb.org/structure/9H48 | https://files.rcsb.org/download/9h48.cif.gz | OXIDOREDUCTASE | 10/17/24 | 2024-10-17 | Mouse Iodothyronine deiodinase 2 catalytic core, mutant - LysLys180AlaAla, Secys-> Cys | Mus musculus | Towell, H., Steegborn, C. | 1.09 | 1.09 | false | X-RAY DIFFRACTION | true | 7 |
9h49 | mmcif/h4/9h49.cif.gz | 278,805 | 08e6e518d059e28c886c8ad3a8028fb454fa9c31 | https://www.rcsb.org/structure/9H49 | https://files.rcsb.org/download/9h49.cif.gz | METAL TRANSPORT | 10/17/24 | 2024-10-17 | Crystal structure of the adduct between human serum transferrin (apo-form) and cisplatin | Homo sapiens | Troisi, R., Galardo, F., Ferraro, G., Sica, F., Merlino, A. | 3.52 | 3.52 | false | X-RAY DIFFRACTION | true | 7 |
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