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 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
9fef | mmcif/fe/9fef.cif.gz | 291,767 | 35f75a4db7682e0d8cd135be06a22fb6dae26f37 | https://www.rcsb.org/structure/9FEF | https://files.rcsb.org/download/9fef.cif.gz | TRANSPORT PROTEIN | 05/19/24 | 2024-05-19 | Cryo-EM structure of Trypanosoma cruzi (MDH)4-PEX5 complex | Trypanosoma cruzi strain CL Brener | Lipinski, O., Sonani, R.R., Blat, A., Jemiola-Rzeminska, M., Patel, S.N., Sood, T., Dubin, G. | 2.98 | 2.98 | false | ELECTRON MICROSCOPY | true | 7 |
9feg | mmcif/fe/9feg.cif.gz | 208,777 | 68f5b86e9c434289c737f050d81903a92d2aad3f | https://www.rcsb.org/structure/9FEG | https://files.rcsb.org/download/9feg.cif.gz | TRANSFERASE | 05/20/24 | 2024-05-20 | PARP15 in complex with a quinazolin-4-one inhibitor | Homo sapiens | Bosetti, C., Lehtio, L. | 1.75 | 1.75 | false | X-RAY DIFFRACTION | true | 3 |
9fei | mmcif/fe/9fei.cif.gz | 95,328 | e633b5d45525e5049175e539864ce07075d99784 | https://www.rcsb.org/structure/9FEI | https://files.rcsb.org/download/9fei.cif.gz | TOXIN | 05/20/24 | 2024-05-20 | Crystal structure of protein D: defoliating toxin form Fusarium oxysporum f.sp. vasinfectum | Fusarium oxysporum | Troilo, F., Doddi, A., Faino, L., Bonaccorsi Di Patti, M.C., Di Matteo, A., Giardina, G. | 1.47 | 1.47 | false | X-RAY DIFFRACTION | true | 6 |
9fej | mmcif/fe/9fej.cif.gz | 138,697 | cab7321528c3b3136ec1c15e1d37ffedc0f91ad6 | https://www.rcsb.org/structure/9FEJ | https://files.rcsb.org/download/9fej.cif.gz | VIRAL PROTEIN | 05/20/24 | 2024-05-20 | Structure of the RNA-dependent RNA polymerase P2 from the bacteriophage Phi8 | Pseudomonas phage phi8 | Latimer-Smith, M., Salgado, P.S., Forsyth, I., Makeyev, E., Poranen, M., Stuart, D.I., Grimes, J.M., El Omari, K. | 3 | 3 | false | X-RAY DIFFRACTION | true | 5 |
9fek | mmcif/fe/9fek.cif.gz | 1,650,630 | eb3f93c538dbe39b7a6ba9f34f96f12f59633f16 | https://www.rcsb.org/structure/9FEK | https://files.rcsb.org/download/9fek.cif.gz | METAL BINDING PROTEIN | 05/20/24 | 2024-05-20 | Crystal structure of guanidinase from Nitrospira inopinata | Candidatus Nitrospira inopinata | Puehringer, D., Mccarthy, A. | 1.58 | 1.58 | false | X-RAY DIFFRACTION | true | 6 |
9fel | mmcif/fe/9fel.cif.gz | 115,975 | fc46fa43cd66f3e848eac3a90d59b16a09e64399 | https://www.rcsb.org/structure/9FEL | https://files.rcsb.org/download/9fel.cif.gz | FLUORESCENT PROTEIN | 05/21/24 | 2024-05-21 | LSSmCherry1 - Directionality of Optical Properties of Fluorescent Proteins | Discosoma sp. | Myskova, J., Brynda, J., Lazar, J. | 1.5 | 1.5 | false | X-RAY DIFFRACTION | true | 1 |
9fem | mmcif/fe/9fem.cif.gz | 61,426 | 2e1e3ae247ab25ec7593746e11aa7c757dee698a | https://www.rcsb.org/structure/9FEM | https://files.rcsb.org/download/9fem.cif.gz | FLUORESCENT PROTEIN | 05/21/24 | 2024-05-21 | mNeonGreen - Directionality of Optical Properties of Fluorescent Proteins | Branchiostoma lanceolatum | Myskova, J., Brynda, J., Lazar, J. | 2.32 | 2.32 | false | X-RAY DIFFRACTION | true | 5 |
9fen | mmcif/fe/9fen.cif.gz | 69,653 | 029d12a6911d36cc36e56baa5ab896f6c8daf2bb | https://www.rcsb.org/structure/9FEN | https://files.rcsb.org/download/9fen.cif.gz | FLUORESCENT PROTEIN | 05/21/24 | 2024-05-21 | LSSmOrange (P1) - Directionality of Optical Properties of Fluorescent Proteins | Aequorea victoria | Myskova, J., Brynda, J., Lazar, J. | 1.6 | 1.6 | false | X-RAY DIFFRACTION | true | 9 |
9feq | mmcif/fe/9feq.cif.gz | 70,956 | 5e7d26d775adcd356ac4862e8d8c1d25bb5a0356 | https://www.rcsb.org/structure/9FEQ | https://files.rcsb.org/download/9feq.cif.gz | FLUORESCENT PROTEIN | 05/21/24 | 2024-05-21 | LSSmOrange (P1) - Directionality of Optical Properties of Fluorescent Proteins | Aequorea victoria | Myskova, J., Brynda, J., Lazar, J. | 1.6 | 1.6 | false | X-RAY DIFFRACTION | true | 9 |
9fer | mmcif/fe/9fer.cif.gz | 112,572 | ba52bb9bbcf253c50b1736055f76879d47a30a57 | https://www.rcsb.org/structure/9FER | https://files.rcsb.org/download/9fer.cif.gz | FLUORESCENT PROTEIN | 05/21/24 | 2024-05-21 | wasCFP (SG P21) - Directionality of Optical Properties of Fluorescent Proteins | Discosoma sp. LW-2004 | Myskova, J., Brynda, J., Lazar, J. | 1.65 | 1.65 | false | X-RAY DIFFRACTION | true | 8 |
9fes | mmcif/fe/9fes.cif.gz | 63,647 | 4c2e2fd511776e2e404e500e20bbb4786cd5f40e | https://www.rcsb.org/structure/9FES | https://files.rcsb.org/download/9fes.cif.gz | FLUORESCENT PROTEIN | 05/21/24 | 2024-05-21 | mCherry - Directionality of Optical Properties of Fluorescent Proteins | Discosoma | Myskova, J., Brynda, J., Lazar, J. | 1.66 | 1.66 | false | X-RAY DIFFRACTION | true | 3 |
9fet | mmcif/fe/9fet.cif.gz | 79,113 | 95f53ab38b57e9e4b204fed63b3db634b8337bac | https://www.rcsb.org/structure/9FET | https://files.rcsb.org/download/9fet.cif.gz | TRANSFERASE | 05/21/24 | 2024-05-21 | Crystal Structure of Human Vaccinia-related kinase 2 (VRK-2) bound to JA-47 | Homo sapiens | Wang, G.Q., Amrhein, J.A., Knapp, S., Structural Genomics Consortium (SGC) | 2.4 | 2.4 | false | X-RAY DIFFRACTION | true | 3 |
9feu | mmcif/fe/9feu.cif.gz | 384,183 | c5103aa188166c3654ef6daf341d419696dee38f | https://www.rcsb.org/structure/9FEU | https://files.rcsb.org/download/9feu.cif.gz | MEMBRANE PROTEIN | 05/21/24 | 2024-05-21 | Cryo-EM structure of the beta3 homomeric GABA(A) receptor in complex with HSM in the long-lived symmetric desensitised state | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.5 | 2.5 | false | ELECTRON MICROSCOPY | true | 5 |
9few | mmcif/fe/9few.cif.gz | 328,132 | b5d05f5771fc065195657ed2979d3f005f385455 | https://www.rcsb.org/structure/9FEW | https://files.rcsb.org/download/9few.cif.gz | MEMBRANE PROTEIN | 05/21/24 | 2024-05-21 | Cryo-EM structure of the beta3 homomeric GABA(A) receptor in the long-lived resting state (C1) | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.5 | 3.5 | false | ELECTRON MICROSCOPY | true | 3 |
9fex | mmcif/fe/9fex.cif.gz | 371,481 | aa585073e89bfdc353da830bb0165340c6fd3f61 | https://www.rcsb.org/structure/9FEX | https://files.rcsb.org/download/9fex.cif.gz | MEMBRANE PROTEIN | 05/21/24 | 2024-05-21 | Cryo-EM structure of the beta3 homomeric GABA(A) receptor in complex with HSM in the short-lived symmetric bound-closed state (C5) | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.6 | 2.6 | false | ELECTRON MICROSCOPY | true | 1 |
9fey | mmcif/fe/9fey.cif.gz | 371,397 | 25924ebcb0508b31b5230d21c441345f301bbe84 | https://www.rcsb.org/structure/9FEY | https://files.rcsb.org/download/9fey.cif.gz | MEMBRANE PROTEIN | 05/21/24 | 2024-05-21 | Cryo-EM structure of the beta3 homomeric GABA(A) receptor in complex with HSM in the short-lived symmetric bound-closed state (C1) | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.9 | 2.9 | false | ELECTRON MICROSCOPY | true | 4 |
9ff0 | mmcif/ff/9ff0.cif.gz | 363,369 | 88ac97a7f01032e79c3fa334a46de5ccc386315c | https://www.rcsb.org/structure/9FF0 | https://files.rcsb.org/download/9ff0.cif.gz | MEMBRANE PROTEIN | 05/21/24 | 2024-05-21 | Cryo-EM structure of the beta3 homomeric GABA(A) receptor in complex with HSM in the short-lived asymmetric open state | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.4 | 3.4 | false | ELECTRON MICROSCOPY | true | 1 |
9ff1 | mmcif/ff/9ff1.cif.gz | 370,591 | fc977516b924eb2846755e8b3d454761d4386b69 | https://www.rcsb.org/structure/9FF1 | https://files.rcsb.org/download/9ff1.cif.gz | MEMBRANE PROTEIN | 05/21/24 | 2024-05-21 | Cryo-EM structure of the beta3 homomeric GABA(A) receptor in complex with HSM in the short-lived asymmetric desensitised state | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.2 | 3.2 | false | ELECTRON MICROSCOPY | true | 3 |
9ff2 | mmcif/ff/9ff2.cif.gz | 378,765 | 8aa8d5d8375f52b408900536301a489700fd9903 | https://www.rcsb.org/structure/9FF2 | https://files.rcsb.org/download/9ff2.cif.gz | MEMBRANE PROTEIN | 05/21/24 | 2024-05-21 | Cryo-EM structure of the beta3 homomeric GABA(A) receptor in complex with HSM in the long-lived symmetric desensitised state (C1) | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.8 | 2.8 | false | ELECTRON MICROSCOPY | true | 8 |
9ff4 | mmcif/ff/9ff4.cif.gz | 292,647 | 42cc88d731dab7da73cca78ac21d8587bb3543f7 | https://www.rcsb.org/structure/9FF4 | https://files.rcsb.org/download/9ff4.cif.gz | DNA BINDING PROTEIN | 05/22/24 | 2024-05-22 | The structure of G.kaustophilus T-1 ScoC-17bp dsDNA complex | Geobacillus kaustophilus; SYNTHETIC CONSTRUCT | Hadad, N., Shulami, S., Pomyalov, S., Shoham, Y., Shoham, G. | 2.8 | 2.8 | false | X-RAY DIFFRACTION | true | 4 |
9ff5 | mmcif/ff/9ff5.cif.gz | 274,317 | 8c0be10ecbe15d0c2bbb5b272b6fd58b18f87f01 | https://www.rcsb.org/structure/9FF5 | https://files.rcsb.org/download/9ff5.cif.gz | DNA BINDING PROTEIN | 05/22/24 | 2024-05-22 | The structure of G.kaustophilus T-1 ScoC-23bp dsDNA complex | Geobacillus kaustophilus; SYNTHETIC CONSTRUCT | Hadad, N., Shulami, S., Pomyalov, S., Shoham, Y., Shoham, G. | 3.5 | 3.5 | false | X-RAY DIFFRACTION | true | 8 |
9ff6 | mmcif/ff/9ff6.cif.gz | 115,967 | ce9cee218ddcf1bbfe0a3a970efddc597d0daf9c | https://www.rcsb.org/structure/9FF6 | https://files.rcsb.org/download/9ff6.cif.gz | PROTEIN TRANSPORT | 05/22/24 | 2024-05-22 | Human transthyretin (TTR) in complex with (E)-4-((((2-methoxybenzyl)oxy)imino)methyl)benzoic acid (Lic157) | Homo sapiens | Ciccone, L., Shepard, W., Sirigu, S., Camodeca, C., Mazzoccchi, F., Fruchart, C., Nencetti, S., Orlandini, E. | 1.4 | 1.4 | false | X-RAY DIFFRACTION | true | 6 |
9ff7 | mmcif/ff/9ff7.cif.gz | 851,501 | 7c392efcf3b15dd4db477432c0040805444cf23a | https://www.rcsb.org/structure/9FF7 | https://files.rcsb.org/download/9ff7.cif.gz | TRANSCRIPTION | 05/22/24 | 2024-05-22 | Structure of the BMOE-crosslinked transcription termination factor Rho in the presence of ppGpp; S84C/M405C double mutant | Escherichia coli | Said, N., Hilal, T., Wahl, M.C. | 3.4 | 3.4 | false | ELECTRON MICROSCOPY | true | 3 |
9ff8 | mmcif/ff/9ff8.cif.gz | 72,061 | e6afa40b27933fc37372f8bb4a83ac541056dc46 | https://www.rcsb.org/structure/9FF8 | https://files.rcsb.org/download/9ff8.cif.gz | PROTEIN TRANSPORT | 05/22/24 | 2024-05-22 | Human transthyretin (TTR) in complex with (E)-2-((((2-chlorobenzyl)oxy)imino)methyl)benzoic acid (Lic166) | Homo sapiens | Ciccone, L., Shepard, W., Sirigu, S., Camodeca, C., Mazzoccchi, F., Fruchart, C., Nencetti, S., Orlandini, E. | 1.42 | 1.42 | false | X-RAY DIFFRACTION | true | 1 |
9ff9 | mmcif/ff/9ff9.cif.gz | 145,717 | 2080d1844505d9f2f3628059c0df907bdaf6cb3e | https://www.rcsb.org/structure/9FF9 | https://files.rcsb.org/download/9ff9.cif.gz | STRUCTURAL PROTEIN | 05/22/24 | 2024-05-22 | Crystal structure of N-terminal acetylated tropomyosin Cdc8 | Schizosaccharomyces pombe | Zahn, M., Heiringhoff, R.S., Fedorov, R., Manstein, D.J. | 2.195 | 2.195 | false | X-RAY DIFFRACTION | true | 1 |
9ffb | mmcif/ff/9ffb.cif.gz | 430,983 | b8a9d5c34503549828faa2b36b326cc176a6aaad | https://www.rcsb.org/structure/9FFB | https://files.rcsb.org/download/9ffb.cif.gz | DNA BINDING PROTEIN | 05/22/24 | 2024-05-22 | ss-dsDNA-FANCD2-FANCI complex | Gallus gallus; SYNTHETIC CONSTRUCT | Alcon, P., Passmore, L.A. | 3.59 | 3.59 | false | ELECTRON MICROSCOPY | true | 7 |
9ffc | mmcif/ff/9ffc.cif.gz | 194,947 | f0199144932a39a5f1f5184d446c88033d5b1f2a | https://www.rcsb.org/structure/9FFC | https://files.rcsb.org/download/9ffc.cif.gz | ISOMERASE | 05/23/24 | 2024-05-23 | Crystal structure of human triose phosphate isomerase with glycerol-3-phosphate ligand | Homo sapiens | Jonatansdottir, Y.Y., Hjorleifsson, G.J. | 1.25 | 1.25 | false | X-RAY DIFFRACTION | true | 8 |
9ffd | mmcif/ff/9ffd.cif.gz | 403,500 | 0329369f4b540e2c0a60d6dd6fc62619f9048859 | https://www.rcsb.org/structure/9FFD | https://files.rcsb.org/download/9ffd.cif.gz | OXIDOREDUCTASE | 05/23/24 | 2024-05-23 | STRUCTURE OF ALDO-KETO REDUCTASE 1C3 (AKR1C3) IN COMPLEX WITH AN INHIBITOR MEDS765 | Homo sapiens | Frydenvang, K., Hussain, S., Mirza, O.A. | 1.75 | 1.75 | false | X-RAY DIFFRACTION | true | 2 |
9ffe | mmcif/ff/9ffe.cif.gz | 139,222 | 241cd3c29b56d88f1625ababb5daf2f14dd9a2e9 | https://www.rcsb.org/structure/9FFE | https://files.rcsb.org/download/9ffe.cif.gz | OXIDOREDUCTASE | 05/23/24 | 2024-05-23 | Carbohydrate active oxidoreductases from Phytophthora sojae | Phytophthora sojae | Banerjee, S., Turella, S., Morth, J.P., Abou Hachem, M. | 2.12 | 2.12 | false | X-RAY DIFFRACTION | true | 5 |
9fff | mmcif/ff/9fff.cif.gz | 396,020 | 57d0112874508d66f8dfd252eff02aa0bd1de0fd | https://www.rcsb.org/structure/9FFF | https://files.rcsb.org/download/9fff.cif.gz | DNA BINDING PROTEIN | 05/23/24 | 2024-05-23 | dsDNA-FANCD2-FANCI complex | Gallus gallus; SYNTHETIC CONSTRUCT | Alcon, P., Passmore, L.A. | 3.68 | 3.68 | false | ELECTRON MICROSCOPY | true | 6 |
9ffg | mmcif/ff/9ffg.cif.gz | 99,654 | 0358622cafcd5fc70b2bec39ca2cdf5b4c3055f6 | https://www.rcsb.org/structure/9FFG | https://files.rcsb.org/download/9ffg.cif.gz | VIRUS | 05/23/24 | 2024-05-23 | Empty capsid of Rhodobacter microvirus Ebor computed with I4 symmetry | Rhodobacter capsulatus | Bardy, P., MacDonald, C.I.W., Jenkins, H.T., Byrom, L., Chechik, M., Hart, S.J., Turkenburg, J.P., Blaza, J.N., Fogg, P.C.M., Antson, A.A. | 3.3 | 3.3 | false | ELECTRON MICROSCOPY | true | 6 |
9ffh | mmcif/ff/9ffh.cif.gz | 102,446 | 229c567377aeff2c65495b804a358195ba71c344 | https://www.rcsb.org/structure/9FFH | https://files.rcsb.org/download/9ffh.cif.gz | VIRUS | 05/23/24 | 2024-05-23 | Native capsid of Rhodobacter microvirus Ebor computed with I4 symmetry | Rhodobacter capsulatus SB 1003 | Bardy, P., MacDonald, C.I.W., Jenkins, H.T., Chechik, M., Hart, S.J., Turkenburg, J.P., Blaza, J.N., Fogg, P.C.M., Antson, A.A. | 3.2 | 3.2 | false | ELECTRON MICROSCOPY | true | 8 |
9ffi | mmcif/ff/9ffi.cif.gz | 65,390 | 96a600ec38078cc77c4b8bb6dc9e233ace25a1f4 | https://www.rcsb.org/structure/9FFI | https://files.rcsb.org/download/9ffi.cif.gz | FLUORESCENT PROTEIN | 05/23/24 | 2024-05-23 | mScarlet (SG C5) - Directionality of Optical Properties of Fluorescent Proteins | synthetic construct | Myskova, J., Brynda, J., Lazar, J. | 1.5 | 1.5 | false | X-RAY DIFFRACTION | true | 5 |
9ffj | mmcif/ff/9ffj.cif.gz | 107,927 | b5f30a7d06f3c6aacc1baa7c319d8dd3410de50b | https://www.rcsb.org/structure/9FFJ | https://files.rcsb.org/download/9ffj.cif.gz | METAL BINDING PROTEIN | 05/23/24 | 2024-05-23 | Artificial metalloenzyme with a nickel-based 1,10-phenanthroline cofactor and streptavidin N49M-S112V mutant | Streptomyces avidinii | Lau, K., Wang, W., Pojer, F., Larabi, A. | 1.27 | 1.27 | false | X-RAY DIFFRACTION | true | 4 |
9ffk | mmcif/ff/9ffk.cif.gz | 226,484 | 7c4972300847d95a6aea92b73f43d0b26bcf98ab | https://www.rcsb.org/structure/9FFK | https://files.rcsb.org/download/9ffk.cif.gz | HYDROLASE | 05/23/24 | 2024-05-23 | Vanillyl alcohol oxidase from Novosphingobium sp in complex with vanillyl alcohol | Novosphingobium sp. | Guerriere, T.B., Mattevi, A. | 1.7 | 1.7 | false | X-RAY DIFFRACTION | true | 2 |
9ffl | mmcif/ff/9ffl.cif.gz | 412,665 | 6c0fd9363ae99f732ef3a935dd3c02d4b9663f8c | https://www.rcsb.org/structure/9FFL | https://files.rcsb.org/download/9ffl.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3 GABA(A) receptor in complex with GABA and Mb25 in the short-lived symmetric bound-closed state | Helicobacter pylori G27; Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.8 | 2.8 | false | ELECTRON MICROSCOPY | true | 9 |
9ffn | mmcif/ff/9ffn.cif.gz | 410,875 | ea1df647d8129a0c4bd5dee39f57f09e8f38f244 | https://www.rcsb.org/structure/9FFN | https://files.rcsb.org/download/9ffn.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3 GABA(A) receptor in complex with GABA and Mb25 in the short-lived asymmetric bound-closed 1 state of branch 1 | Helicobacter pylori G27; Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.1 | 3.1 | false | ELECTRON MICROSCOPY | true | 5 |
9ffo | mmcif/ff/9ffo.cif.gz | 405,983 | 2d7bcf83d492c23a5aa391829f24331467c0beef | https://www.rcsb.org/structure/9FFO | https://files.rcsb.org/download/9ffo.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3 GABA(A) receptor in complex with GABA and Mb25 in the short-lived asymmetric bound-closed 2 state of branch 1 | Helicobacter pylori G27; Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.2 | 3.2 | false | ELECTRON MICROSCOPY | true | 4 |
9ffr | mmcif/ff/9ffr.cif.gz | 403,382 | 523b60226264373835531766c1c80b7344a2cd1b | https://www.rcsb.org/structure/9FFR | https://files.rcsb.org/download/9ffr.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3 GABA(A) receptor in complex with GABA and Mb25 in the short-lived asymmetric bound-closed state of branch 2 | Helicobacter pylori G27; Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.1 | 3.1 | false | ELECTRON MICROSCOPY | true | 8 |
9ffs | mmcif/ff/9ffs.cif.gz | 402,058 | 92c11c5dbf23df36a0e99727f43a697ae56d39c2 | https://www.rcsb.org/structure/9FFS | https://files.rcsb.org/download/9ffs.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3 GABA(A) receptor in complex with GABA and Mb25 in the short-lived asymmetric open state of branch 2 | Helicobacter pylori G27; Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.2 | 3.2 | false | ELECTRON MICROSCOPY | true | 4 |
9fft | mmcif/ff/9fft.cif.gz | 401,166 | b6a13f304f7217022213f60e0dd4d4c8be5c7ff6 | https://www.rcsb.org/structure/9FFT | https://files.rcsb.org/download/9fft.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3 GABA(A) receptor in complex with GABA and Mb25 in the short-lived asymmetric desensitised state of branch 2 | Helicobacter pylori G27; Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.1 | 3.1 | false | ELECTRON MICROSCOPY | true | 4 |
9ffv | mmcif/ff/9ffv.cif.gz | 501,909 | 6d506e0a8152ba985c944f4d60cde89f11cc20c0 | https://www.rcsb.org/structure/9FFV | https://files.rcsb.org/download/9ffv.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3gamma2 GABA(A) receptor in complex with Nb38 in the long-lived symmetric resting state | Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.8 | 2.8 | false | ELECTRON MICROSCOPY | true | 7 |
9ffw | mmcif/ff/9ffw.cif.gz | 493,154 | 48504ca444f617864e83b9198a3d92a819facde5 | https://www.rcsb.org/structure/9FFW | https://files.rcsb.org/download/9ffw.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3gamma2 GABA(A) receptor in complex with GABA and Nb38 in the short-lived symmetric bound-closed state | Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.4 | 3.4 | false | ELECTRON MICROSCOPY | true | 2 |
9ffx | mmcif/ff/9ffx.cif.gz | 425,028 | bb45fc219f99691c584c040475ee99d643196f9a | https://www.rcsb.org/structure/9FFX | https://files.rcsb.org/download/9ffx.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3gamma2 GABA(A) receptor in complex with GABA and Nb38 in the short-lived asymmetric bound-closed state | Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.6 | 3.6 | false | ELECTRON MICROSCOPY | true | 1 |
9ffy | mmcif/ff/9ffy.cif.gz | 405,193 | a8b1909916be8a594e441b98615f08916c824ffd | https://www.rcsb.org/structure/9FFY | https://files.rcsb.org/download/9ffy.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3gamma2 GABA(A) receptor in complex with GABA and Nb38 in the short-lived asymmetric open1 state | Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.1 | 3.1 | false | ELECTRON MICROSCOPY | true | 5 |
9fg0 | mmcif/fg/9fg0.cif.gz | 350,650 | 65022a248b7e9e775ebb9ed9809576db4a04834c | https://www.rcsb.org/structure/9FG0 | https://files.rcsb.org/download/9fg0.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3gamma2 GABA(A) receptor in complex with GABA and Nb38 in the short-lived asymmetric open 2 state | Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.6 | 3.6 | false | ELECTRON MICROSCOPY | true | 5 |
9fg1 | mmcif/fg/9fg1.cif.gz | 427,757 | e23f6ba910d3843236e3a7a333f69ac19cb956a5 | https://www.rcsb.org/structure/9FG1 | https://files.rcsb.org/download/9fg1.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3gamma2 GABA(A) receptor in complex with GABA and Nb38 in the short-lived asymmetric desensitised 2 state | Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.1 | 3.1 | false | ELECTRON MICROSCOPY | true | 6 |
9fg2 | mmcif/fg/9fg2.cif.gz | 497,088 | fdf9bf11482fa81e57f163b0ea320b1aaf90cca3 | https://www.rcsb.org/structure/9FG2 | https://files.rcsb.org/download/9fg2.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3gamma2 GABA(A) receptor in complex with GABA and Nb38 in the long-lived symmetric desensitised state | Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.0 | 3 | false | ELECTRON MICROSCOPY | true | 2 |
9fg3 | mmcif/fg/9fg3.cif.gz | 525,397 | 94bbeac65bd9bb67fecbba84245cde51f2755088 | https://www.rcsb.org/structure/9FG3 | https://files.rcsb.org/download/9fg3.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the alpha1beta3gamma2 GABA(A) receptor in complex with GABA and Nb38 bound twice in the long-lived symmetric desensitised state | Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.1 | 3.1 | false | ELECTRON MICROSCOPY | true | 9 |
9fg4 | mmcif/fg/9fg4.cif.gz | 377,688 | 4e55a98778cfeea87aec8287fabcf92e86fe7f56 | https://www.rcsb.org/structure/9FG4 | https://files.rcsb.org/download/9fg4.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3 GABA(A) receptor in the long-lived symmetric resting state | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.4 | 3.4 | false | ELECTRON MICROSCOPY | true | 2 |
9fg5 | mmcif/fg/9fg5.cif.gz | 378,449 | 8bfcf8082d9216a4815c53db343be3c75443bf9b | https://www.rcsb.org/structure/9FG5 | https://files.rcsb.org/download/9fg5.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3 GABA(A) receptor in complex with GABA in the short-lived symmetric bound-closed state | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.2 | 3.2 | false | ELECTRON MICROSCOPY | true | 3 |
9fg6 | mmcif/fg/9fg6.cif.gz | 378,657 | 9906b29681b84e20d2cc3447295b7de03fda41ee | https://www.rcsb.org/structure/9FG6 | https://files.rcsb.org/download/9fg6.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3 GABA(A) receptor in complex with GABA and HSM in the long-lived symmetric desensitised state | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.3 | 3.3 | false | ELECTRON MICROSCOPY | true | 1 |
9fg7 | mmcif/fg/9fg7.cif.gz | 398,627 | d7f9d36be3cc21b024c90588e5b2e1f2f7efea16 | https://www.rcsb.org/structure/9FG7 | https://files.rcsb.org/download/9fg7.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3gamma2 GABA(A) receptor in complex with GABA in the short-lived symmetric bound-closed state | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.7 | 2.7 | false | ELECTRON MICROSCOPY | true | 9 |
9fg8 | mmcif/fg/9fg8.cif.gz | 399,492 | b7dbeaeaa13816811356d766138738cbcc3259d8 | https://www.rcsb.org/structure/9FG8 | https://files.rcsb.org/download/9fg8.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3gamma2 GABA(A) receptor in complex with GABA in the long-lived symmetric desensitised state | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.9 | 2.9 | false | ELECTRON MICROSCOPY | true | 4 |
9fg9 | mmcif/fg/9fg9.cif.gz | 409,440 | c07582397f8616e801e667bac7e9d4cc5b3a921c | https://www.rcsb.org/structure/9FG9 | https://files.rcsb.org/download/9fg9.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3gamma2 GABA(A) receptor in complex with GABA and Etomidate in the long-lived symmetric desensitised state | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.7 | 2.7 | false | ELECTRON MICROSCOPY | true | 8 |
9fga | mmcif/fg/9fga.cif.gz | 514,533 | c4685b2ef1d3230f51ae67952bbb4c0e67ecc603 | https://www.rcsb.org/structure/9FGA | https://files.rcsb.org/download/9fga.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3gamma2 GABA(A) receptor in SMALPs bound to two PIP2 molecules and in complex with Mb38 | Helicobacter pylori G27; Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.3 | 3.3 | false | ELECTRON MICROSCOPY | true | 2 |
9fgb | mmcif/fg/9fgb.cif.gz | 375,635 | 4927fa30c605f2ff7c4e235354103fa1c07d90da | https://www.rcsb.org/structure/9FGB | https://files.rcsb.org/download/9fgb.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3gamma2 GABA(A) receptor in SMALPs bound to one PIP2 molecule at chain alpha1-A and in complex with Mb38 | Helicobacter pylori G27; Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.8 | 3.8 | false | ELECTRON MICROSCOPY | true | 2 |
9fgc | mmcif/fg/9fgc.cif.gz | 416,060 | eeea6bd859c8202a86f6c73546acfb2868f567e7 | https://www.rcsb.org/structure/9FGC | https://files.rcsb.org/download/9fgc.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3gamma2 GABA(A) receptor in SMALPs bound to one PIP2 molecule at chain alpha1-D and in complex with Mb38 | Helicobacter pylori G27; Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.4 | 3.4 | false | ELECTRON MICROSCOPY | true | 4 |
9fgd | mmcif/fg/9fgd.cif.gz | 410,926 | 958ec237e86369a87facfba3a838ca54f1c876c6 | https://www.rcsb.org/structure/9FGD | https://files.rcsb.org/download/9fgd.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3gamma2 GABA(A) receptor in SMALPs without PIP2 and in complex with Mb38 | Helicobacter pylori G27; Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.3 | 3.3 | false | ELECTRON MICROSCOPY | true | 1 |
9fge | mmcif/fg/9fge.cif.gz | 231,286 | bb5a2d47fa368772160faa5237b143849871f14f | https://www.rcsb.org/structure/9FGE | https://files.rcsb.org/download/9fge.cif.gz | FLAVOPROTEIN | 05/23/24 | 2024-05-23 | Vanillyl alcohol oxidase from Novosphingobium sp: T181D mutant in complex with vanillin | Novosphingobium sp. 01WB02.4-10 | Guerriere, T.B., Mattevi, A. | 1.6 | 1.6 | false | X-RAY DIFFRACTION | true | 5 |
9fgf | mmcif/fg/9fgf.cif.gz | 390,775 | 57371be0c0ff58f08bf7373b24fa3b3abd283852 | https://www.rcsb.org/structure/9FGF | https://files.rcsb.org/download/9fgf.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3gamma2 GABA(A) receptor in Saposin A nanodisc in the long-lived symmetric resting state | Homo sapiens | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.9 | 2.9 | false | ELECTRON MICROSCOPY | true | 7 |
9fgg | mmcif/fg/9fgg.cif.gz | 414,101 | 47108587a10ce889b803aa7ad536cbfdd1662dfb | https://www.rcsb.org/structure/9FGG | https://files.rcsb.org/download/9fgg.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3gamma2 GABA(A) receptor in Saposin A nanodisc bound to GABA and Etomidate in the long-lived symmetric desensitised state | Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 2.6 | 2.6 | false | ELECTRON MICROSCOPY | true | 3 |
9fgh | mmcif/fg/9fgh.cif.gz | 411,515 | 98030ebd88c2899a7797db545bb0457cfc6f5857 | https://www.rcsb.org/structure/9FGH | https://files.rcsb.org/download/9fgh.cif.gz | MEMBRANE PROTEIN | 05/23/24 | 2024-05-23 | Cryo-EM structure of the full-length alpha1beta3gamma2 GABA(A) receptor in large MSP2N2 nanodisc in complex with GABA in the long-lived symmetric desensitised state | Homo sapiens; Lama glama | Mihaylov, D.B., Malinauskas, T., Aricescu, A.R. | 3.0 | 3 | false | ELECTRON MICROSCOPY | true | 6 |
9fgi | mmcif/fg/9fgi.cif.gz | 110,052 | 7c0257c9015e7cf354bbc36f2a198e459b4bf026 | https://www.rcsb.org/structure/9FGI | https://files.rcsb.org/download/9fgi.cif.gz | FLUORESCENT PROTEIN | 05/24/24 | 2024-05-24 | LSSmOrange (P1) - Directionality of Optical Properties of Fluorescent Proteins | Aequorea victoria | Myskova, J., Brynda, J., Lazar, J. | 1.77 | 1.77 | false | X-RAY DIFFRACTION | true | 4 |
9fgj | mmcif/fg/9fgj.cif.gz | 194,370 | bc180bf336f1299dab23c3ca32aca9968f3bdaf2 | https://www.rcsb.org/structure/9FGJ | https://files.rcsb.org/download/9fgj.cif.gz | TOXIN | 05/24/24 | 2024-05-24 | Cryo-EM structure of Legionella effector SdeC (PDE-mART domain) | Legionella pneumophila str. Lens | Weng, T.-H., Misra, M., Chen, W., Safarian, S., Kudryashev, M., Dikic, I. | 3.8 | 3.8 | false | ELECTRON MICROSCOPY | true | 9 |
9fgm | mmcif/fg/9fgm.cif.gz | 234,116 | 02a6d77b1bb0908b44121114ddbdf940f3ed9e14 | https://www.rcsb.org/structure/9FGM | https://files.rcsb.org/download/9fgm.cif.gz | TOXIN | 05/24/24 | 2024-05-24 | Cryo-EM structure of Legionella effector SdeC (3D flexible refinement) | Legionella pneumophila | Weng, T.-H., Misra, M., Chen, W., Safarian, S., Kudryashev, M., Dikic, I. | 4.0 | 4 | false | ELECTRON MICROSCOPY | true | 4 |
9fgn | mmcif/fg/9fgn.cif.gz | 285,067 | cb0a6673d494edff209f6229c2b7e4326ac5f6ec | https://www.rcsb.org/structure/9FGN | https://files.rcsb.org/download/9fgn.cif.gz | VIRUS | 05/24/24 | 2024-05-24 | Coxsackievirus A9 bound with compound 18 (CL304) | Coxsackievirus A9 | Plavec, Z., Butcher, S.J., Mitchell, C., Buckner, C. | 2.64 | 2.64 | false | ELECTRON MICROSCOPY | true | 6 |
9fgo | mmcif/fg/9fgo.cif.gz | 78,857 | 7937a9b72f2035d87ac7ca3a0ab164518118ee73 | https://www.rcsb.org/structure/9FGO | https://files.rcsb.org/download/9fgo.cif.gz | VIRAL PROTEIN | 05/24/24 | 2024-05-24 | Crystal structure of Enterovirus 71 2A protease mutant C110A containing VP1-2A junction in the active site | Enterovirus A71 | Ni, X., Koekemoer, L., Williams, E.P., Wang, S., Wright, N.D., Godoy, A.S., Aschenbrenner, J.C., Balcomb, B.H., Lithgo, R.M., Marples, P.G., Fairhead, M., Thompson, W., Kirkegaard, K., Fearon, D., Walsh, M.A., von Delft, F. | 1.43 | 1.43 | false | X-RAY DIFFRACTION | true | 3 |
9fgp | mmcif/fg/9fgp.cif.gz | 82,739 | c1d34076c6f940952a31a25e09c0018caccd03a1 | https://www.rcsb.org/structure/9FGP | https://files.rcsb.org/download/9fgp.cif.gz | UNKNOWN FUNCTION | 05/24/24 | 2024-05-24 | cilia and flagella associated protein 299 | Homo sapiens | Wright, N.D., Koekemoer, L., Structural Genomics Consortium (SGC) | 1.49 | 1.49 | false | X-RAY DIFFRACTION | true | 5 |
9fgq | mmcif/fg/9fgq.cif.gz | 405,220 | 1672670514cb86d54ddde1f385358cdf055a2dba | https://www.rcsb.org/structure/9FGQ | https://files.rcsb.org/download/9fgq.cif.gz | CELL CYCLE | 05/24/24 | 2024-05-24 | Structure of human APC3loop 375-381 bound to the NCP | Homo sapiens | Young, R.V.C., Muhammad, R., Alfieri, C. | 2.5 | 2.5 | false | ELECTRON MICROSCOPY | true | 4 |
9fgr | mmcif/fg/9fgr.cif.gz | 113,809 | 176d5bfb2190cc69876ecebe55383145dc6a53f4 | https://www.rcsb.org/structure/9FGR | https://files.rcsb.org/download/9fgr.cif.gz | VIRAL PROTEIN | 05/25/24 | 2024-05-25 | SARS-CoV-2 (wuhan variant) Spike protein in complex with the single chain fragment scFv76-77 (focused refinement) | Homo sapiens; Severe acute respiratory syndrome coronavirus 2 | Berlinguer, M., Chaves-Sanjuan, A., Milazzo, F.M., Minenkova, O., De Santis, R., Bolognesi, M. | 4.0 | 4 | false | ELECTRON MICROSCOPY | true | 2 |
9fgs | mmcif/fg/9fgs.cif.gz | 112,647 | bb9c070ff5a5f0cfaf373cf916f2e54332eec0bf | https://www.rcsb.org/structure/9FGS | https://files.rcsb.org/download/9fgs.cif.gz | VIRAL PROTEIN | 05/25/24 | 2024-05-25 | SARS-CoV-2 (wuhan variant) Spike protein in complex with the single chain fragment scFv41N (focused refinement) | Enterobacteria phage T4; Homo sapiens; Severe acute respiratory syndrome coronavirus 2 | Berlinguer, M., Chaves-Sanjuan, A., Milazzo, F.M., Minenkova, O., De Santis, R., Bolognesi, M. | 4.0 | 4 | false | ELECTRON MICROSCOPY | true | 9 |
9fgt | mmcif/fg/9fgt.cif.gz | 108,978 | be17f1f1785ffa6f1d6f183a90f9ce97adfeeb1c | https://www.rcsb.org/structure/9FGT | https://files.rcsb.org/download/9fgt.cif.gz | VIRAL PROTEIN | 05/25/24 | 2024-05-25 | SARS-CoV-2 (B.1.1.529/Omicron variant) Spike protein in complex with the single chain fragment scFv76 (focused refinement) | Enterobacteria phage T4; Homo sapiens; Severe acute respiratory syndrome coronavirus 2 | Berlinguer, M., Chaves-Sanjuan, A., Milazzo, F.M., Minenkova, O., De Santis, R., Bolognesi, M. | 3.8 | 3.8 | false | ELECTRON MICROSCOPY | true | 5 |
9fgv | mmcif/fg/9fgv.cif.gz | 203,689 | 9b1acf8d5d1c77baf6fc393e5884b4d614ba9f6f | https://www.rcsb.org/structure/9FGV | https://files.rcsb.org/download/9fgv.cif.gz | PROTEIN BINDING | 05/26/24 | 2024-05-26 | Cryo-EM structure of MBP homo-dimer assembled by homo Di-Gluebody | Escherichia coli; Lama glama | Yi, G., Ye, M., Mamalis, D., Carrique, L., Fairhead, M., Li, H., Duerr, K., Zhang, P., Sauer, D.B., von Delft, F., Davis, B.G., Gilbert, R.J.C. | 3.39 | 3.39 | false | ELECTRON MICROSCOPY | true | 5 |
9fgx | mmcif/fg/9fgx.cif.gz | 171,268 | a1b916b53591121f11d3ad9d701a3f382348ffa9 | https://www.rcsb.org/structure/9FGX | https://files.rcsb.org/download/9fgx.cif.gz | PROTEIN BINDING | 05/26/24 | 2024-05-26 | Cryo-EM structure of Lysozyme homo-dimer assembled by homo Di-Gluebody | Gallus gallus; Lama glama | Yi, G., Ye, M., Mamalis, D., Carrique, L., Fairhead, M., Li, H., Duerr, K., Zhang, P., Sauer, D.B., von Delft, F., Davis, B.G., Gilbert, R.J.C. | 3.53 | 3.53 | false | ELECTRON MICROSCOPY | true | 4 |
9fgy | mmcif/fg/9fgy.cif.gz | 104,851 | db26487a1e16eff65964d573c334cb55a03a5bde | https://www.rcsb.org/structure/9FGY | https://files.rcsb.org/download/9fgy.cif.gz | PROTEIN BINDING | 05/26/24 | 2024-05-26 | Cryo-EM structure of Lysozyme homo-dimer assembled by homo Di-Gluebody - Local refinement | Gallus gallus; Lama glama | Yi, G., Ye, M., Mamalis, D., Carrique, L., Fairhead, M., Li, H., Duerr, K., Zhang, P., Sauer, D.B., von Delft, F., Davis, B.G., Gilbert, R.J.C. | 3.16 | 3.16 | false | ELECTRON MICROSCOPY | true | 3 |
9fgz | mmcif/fg/9fgz.cif.gz | 274,438 | aade63c05f6a45e240965ed4d27dd7ea8b425060 | https://www.rcsb.org/structure/9FGZ | https://files.rcsb.org/download/9fgz.cif.gz | PROTEIN TRANSPORT | 05/26/24 | 2024-05-26 | Pex5-Eci1 complex - Eci1 reconstruction | Saccharomyces cerevisiae | Elad, N., Dym, O. | 2.7 | 2.7 | false | ELECTRON MICROSCOPY | true | 9 |
9fh0 | mmcif/fh/9fh0.cif.gz | 121,359 | c58635aa64a31b569bb7114fc46148d429a5135e | https://www.rcsb.org/structure/9FH0 | https://files.rcsb.org/download/9fh0.cif.gz | PROTEIN TRANSPORT | 05/26/24 | 2024-05-26 | Pex5-Eci1 complex - Pex5 local refinement | Saccharomyces cerevisiae | Elad, N., Dym, O. | 2.9 | 2.9 | false | ELECTRON MICROSCOPY | true | 1 |
9fh1 | mmcif/fh/9fh1.cif.gz | 99,083 | da6e1ec85b41d1da4a61d250a5f761c096486be3 | https://www.rcsb.org/structure/9FH1 | https://files.rcsb.org/download/9fh1.cif.gz | PROTEIN FIBRIL | 05/26/24 | 2024-05-26 | Cryo-EM Structure of Amyloid-beta Fibrils from Mouse Brain Carrying the Uppsala AbetaUpp(1-42)delta(19-24) Mutation | Mus musculus | Zielinski, M., Peralta Reyes, F.S., Gremer, L., Pagnon de la Vega, M., Roeder, C., Heidler, T.V., Syvaenen, S., Willbold, D., Sehlin, D., Ingelsson, M., Schroeder, G.F. | 3.2 | 3.2 | false | ELECTRON MICROSCOPY | true | 8 |
9fh2 | mmcif/fh/9fh2.cif.gz | 95,754 | 179dca359971b2fee995cbd01423ed037fb1c2d6 | https://www.rcsb.org/structure/9FH2 | https://files.rcsb.org/download/9fh2.cif.gz | PROTEIN FIBRIL | 05/26/24 | 2024-05-26 | Cryo-EM Structure of Amyloid-beta Fibrils Carrying the Uppsala AbetaUpp(1-42)delta(19-24) Mutation - Polymorph 1 | Zielinski, M., Peralta Reyes, F.S., Gremer, L., Pagnon de la Vega, M., Roeder, C., Heidler, T.V., Syvaenen, S., Willbold, D., Sehlin, D., Ingelsson, M., Schroeder, G.F. | 3.7 | 3.7 | false | ELECTRON MICROSCOPY | true | 3 | |
9fh3 | mmcif/fh/9fh3.cif.gz | 96,653 | 753bf230715c4da9406a82dca5dba24a56e014ab | https://www.rcsb.org/structure/9FH3 | https://files.rcsb.org/download/9fh3.cif.gz | PROTEIN FIBRIL | 05/26/24 | 2024-05-26 | Cryo-EM Structure of Amyloid-beta Fibrils Carrying the Uppsala AbetaUpp(1-42)delta(19-24) Mutation - Polymorph 2 | Zielinski, M., Peralta Reyes, F.S., Gremer, L., Pagnon de la Vega, M., Roeder, C., Heidler, T.V., Syvaenen, S., Willbold, D., Sehlin, D., Ingelsson, M., Schroeder, G.F. | 3.9 | 3.9 | false | ELECTRON MICROSCOPY | true | 5 | |
9fh4 | mmcif/fh/9fh4.cif.gz | 83,667 | dd687ca34edbec512c33f1f0258810e18f120c15 | https://www.rcsb.org/structure/9FH4 | https://files.rcsb.org/download/9fh4.cif.gz | PROTEIN FIBRIL | 05/26/24 | 2024-05-26 | Cryo-EM Structure of Amyloid-beta Fibrils Carrying the Uppsala AbetaUpp(1-42)delta(19-24) Mutation - Polymorph 3 | Zielinski, M., Peralta Reyes, F.S., Gremer, L., Pagnon de la Vega, M., Roeder, C., Heidler, T.V., Syvaenen, S., Willbold, D., Sehlin, D., Ingelsson, M., Schroeder, G.F. | 4.0 | 4 | false | ELECTRON MICROSCOPY | true | 2 | |
9fh5 | mmcif/fh/9fh5.cif.gz | 93,986 | c0ff1483f04aaab6c38cc7aae7c16674cf08edfd | https://www.rcsb.org/structure/9FH5 | https://files.rcsb.org/download/9fh5.cif.gz | PROTEIN FIBRIL | 05/26/24 | 2024-05-26 | Cryo-EM Structure of Amyloid-beta Fibrils Carrying the Uppsala AbetaUpp(1-42)delta(19-24) Mutation - Polymorph 4 | Zielinski, M., Peralta Reyes, F.S., Gremer, L., Pagnon de la Vega, M., Roeder, C., Heidler, T.V., Syvaenen, S., Willbold, D., Sehlin, D., Ingelsson, M., Schroeder, G.F. | 3.8 | 3.8 | false | ELECTRON MICROSCOPY | true | 1 | |
9fh6 | mmcif/fh/9fh6.cif.gz | 241,192 | b3a30c74abb2a3a0c91afca03ff3f7ab0e077aae | https://www.rcsb.org/structure/9FH6 | https://files.rcsb.org/download/9fh6.cif.gz | PROTEIN FIBRIL | 05/26/24 | 2024-05-26 | Cryo-EM Structure of Tau Filaments from Individuals Carrying the Uppsala AbetaUpp(1-42)delta(19-24) Mutation | Homo sapiens | Zielinski, M., Peralta Reyes, F.S., Gremer, L., Pagnon de la Vega, M., Roeder, C., Heidler, T.V., Syvaenen, S., Willbold, D., Sehlin, D., Ingelsson, M., Schroeder, G.F. | 3.3 | 3.3 | false | ELECTRON MICROSCOPY | true | 1 |
9fh7 | mmcif/fh/9fh7.cif.gz | 180,067 | 92684b6f9526ee07f6776f2746d9db04428697d9 | https://www.rcsb.org/structure/9FH7 | https://files.rcsb.org/download/9fh7.cif.gz | FLAVOPROTEIN | 05/26/24 | 2024-05-26 | OYE2 from Saccharomyces cerevisiae | Saccharomyces cerevisiae | Opperman, D.J., Paul, C.E. | 1.529 | 1.529 | false | X-RAY DIFFRACTION | true | 8 |
9fh8 | mmcif/fh/9fh8.cif.gz | 434,083 | a66c79cedf9884f2f3ffd4b76350fea76eaf3198 | https://www.rcsb.org/structure/9FH8 | https://files.rcsb.org/download/9fh8.cif.gz | CELL CYCLE | 05/26/24 | 2024-05-26 | Crystal structure of the SPD-2 domain of Apis dorsata CEP192 | Apis dorsata | van Breugel, M. | 3.5 | 3.5 | false | X-RAY DIFFRACTION | true | 2 |
9fh9 | mmcif/fh/9fh9.cif.gz | 393,469 | e3e4667e583b7434a1e2c2646f5fe36c1c86a6b2 | https://www.rcsb.org/structure/9FH9 | https://files.rcsb.org/download/9fh9.cif.gz | CELL CYCLE | 05/27/24 | 2024-05-27 | Structure of CyclinB1 N-terminus bound to the NCP | Homo sapiens; Xenopus laevis; SYNTHETIC CONSTRUCT | Young, R.V.C., Muhammad, R., Alfieri, C. | 2.5 | 2.5 | false | ELECTRON MICROSCOPY | true | 9 |
9fha | mmcif/fh/9fha.cif.gz | 69,652 | e4d8b970ce440a84cf584b92245e6614396bc763 | https://www.rcsb.org/structure/9FHA | https://files.rcsb.org/download/9fha.cif.gz | PROTEIN TRANSPORT | 05/27/24 | 2024-05-27 | Human transthyretin (TTR) in complex with (E)-2-((((2-(trifluoromethyl)benzyl)oxy)imino)methyl)benzoic acid | Homo sapiens | Ciccone, L., Shepard, W., Sirigu, S., Camodeca, C., Mazzoccchi, F., Fruchart, C., Nencetti, S., Orlandini, E. | 1.7 | 1.7 | false | X-RAY DIFFRACTION | true | 4 |
9fhc | mmcif/fh/9fhc.cif.gz | 251,767 | fc04503a5b702be102629116de104ab697e20250 | https://www.rcsb.org/structure/9FHC | https://files.rcsb.org/download/9fhc.cif.gz | TRANSPORT PROTEIN | 05/27/24 | 2024-05-27 | Crystallographic structure of AcrB V612F with bound minocycline | Escherichia coli K-12; synthetic construct | Lazarova, M., Diederichs, K., Pos, K.M. | 2.2 | 2.2 | false | X-RAY DIFFRACTION | true | 5 |
9fhd | mmcif/fh/9fhd.cif.gz | 366,121 | 755ab6820c66a3cd8954d8e9862835b520dc3eb2 | https://www.rcsb.org/structure/9FHD | https://files.rcsb.org/download/9fhd.cif.gz | SUGAR BINDING PROTEIN | 05/27/24 | 2024-05-27 | hKHK-C in fomplex with BI-9787 | Homo sapiens | Ebenhoch, R., Pautsch, A. | 1.845 | 1.845 | false | X-RAY DIFFRACTION | true | 6 |
9fhe | mmcif/fh/9fhe.cif.gz | 361,945 | a482656706b098ec5fc01f8780af10321f2e266c | https://www.rcsb.org/structure/9FHE | https://files.rcsb.org/download/9fhe.cif.gz | SUGAR BINDING PROTEIN | 05/27/24 | 2024-05-27 | hKHK-C in complex with BI-9787 (pH 5.5) | Homo sapiens | Ebenhoch, R., Pautsch, A. | 2.313 | 2.313 | false | X-RAY DIFFRACTION | true | 6 |
9fhf | mmcif/fh/9fhf.cif.gz | 1,047,811 | b1ec8b109a30cbc3ddcdea340bf323dae8138a7e | https://www.rcsb.org/structure/9FHF | https://files.rcsb.org/download/9fhf.cif.gz | ISOMERASE | 05/27/24 | 2024-05-27 | Crystal structure of human Glucose-6-phosphate isomerase with dihydroxyacetone phosphate ligand | Homo sapiens | Jonatansdottir, Y.Y., Hjorleifsson, G.J. | 1.8 | 1.8 | false | X-RAY DIFFRACTION | true | 3 |
9fhj | mmcif/fh/9fhj.cif.gz | 240,792 | b161090527f823664bbc41ffc4d3b6b6f7b48e0c | https://www.rcsb.org/structure/9FHJ | https://files.rcsb.org/download/9fhj.cif.gz | TRANSPORT PROTEIN | 05/27/24 | 2024-05-27 | Crystallographic structure of AcrB V612N in TTT state | Escherichia coli K-12; synthetic construct | Lazarova, M., Pos, K.M. | 3.55 | 3.55 | false | X-RAY DIFFRACTION | true | 8 |
9fhk | mmcif/fh/9fhk.cif.gz | 358,191 | be7382daced5664aa380bced79b7fcbccd175530 | https://www.rcsb.org/structure/9FHK | https://files.rcsb.org/download/9fhk.cif.gz | VIRAL PROTEIN | 05/27/24 | 2024-05-27 | Structure of the F13 protein of Vaccinia virus (P21 crystal form) | Vaccinia virus Western Reserve | Vernuccio, R., Guardado-Calvo, P. | 2.1 | 2.1 | false | X-RAY DIFFRACTION | true | 4 |
9fhn | mmcif/fh/9fhn.cif.gz | 704,801 | 2c9fda97cc7f5cc3e6f1036c5c01720fe6e07a1f | https://www.rcsb.org/structure/9FHN | https://files.rcsb.org/download/9fhn.cif.gz | ALLERGEN | 05/28/24 | 2024-05-28 | Crystal structure of the arginine kinase Der p 20.0101 | Dermatophagoides pteronyssinus | Schooltink, L., Sagmeister, T., Todorovic, N., Hofer, G., Keller, W. | 1.9 | 1.9 | false | X-RAY DIFFRACTION | true | 6 |
9fho | mmcif/fh/9fho.cif.gz | 378,280 | b5e43df53fabd1c7a5bdbffe8247c0ade1340dba | https://www.rcsb.org/structure/9FHO | https://files.rcsb.org/download/9fho.cif.gz | ALLERGEN | 05/28/24 | 2024-05-28 | Crystal structure of the arginine kinase Der p 20_like (putative isoform) | Dermatophagoides pteronyssinus | Schooltink, L., Sagmeister, T., Todorovic, N., Hofer, G., Keller, W. | 1.8 | 1.8 | false | X-RAY DIFFRACTION | true | 7 |
9fhp | mmcif/fh/9fhp.cif.gz | 87,931 | 09819d27fea3134fadeffe3d4f4655d364de72b8 | https://www.rcsb.org/structure/9FHP | https://files.rcsb.org/download/9fhp.cif.gz | VIRUS | 05/28/24 | 2024-05-28 | CryoEM structure of wild-type Turnip Yellows Virus | Turnip yellows virus | Trapani, S., Lai Kee Him, J., Hoh, F., Brault, V., Bron, P. | 4.08 | 4.08 | false | ELECTRON MICROSCOPY | true | 5 |
9fhq | mmcif/fh/9fhq.cif.gz | 145,873 | 3a5393f75c190ad31e9552c806ff07e53d15a816 | https://www.rcsb.org/structure/9FHQ | https://files.rcsb.org/download/9fhq.cif.gz | ANTIVIRAL PROTEIN | 05/28/24 | 2024-05-28 | Crystal structure of SARS-CoV-2 Mpro in complex with RHTCR04 | Severe acute respiratory syndrome coronavirus 2 | El kilani, H., Hilgenfeld, R. | 1.696 | 1.696 | false | X-RAY DIFFRACTION | true | 7 |
9fhs | mmcif/fh/9fhs.cif.gz | 201,089 | 8efa06538a39f8505cee3ba2d5e1a1b8872ad207 | https://www.rcsb.org/structure/9FHS | https://files.rcsb.org/download/9fhs.cif.gz | VIRAL PROTEIN | 05/28/24 | 2024-05-28 | Structure of the F13 protein of Vaccinia virus (F432 crystal form) | Vaccinia virus Western Reserve | Vernuccio, R., Guardado-Calvo, P. | 2.82 | 2.82 | false | X-RAY DIFFRACTION | true | 3 |
9fht | mmcif/fh/9fht.cif.gz | 414,196 | 152d7972dfa9a293e45c97f7fc4f64bdd2df2811 | https://www.rcsb.org/structure/9FHT | https://files.rcsb.org/download/9fht.cif.gz | LYASE | 05/28/24 | 2024-05-28 | Bacteroides ovatus polysaccharide lyase family 38 (BoPL38) wild type in complex hexaguluronic acid at pH 3.5 | Bacteroides ovatus | Tandrup, T., Wilkens, C. | 2.05 | 2.05 | false | X-RAY DIFFRACTION | true | 7 |
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