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 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
9iny | mmcif/in/9iny.cif.gz | 204,788 | 5b4a49471f586e9123c7bcd8d540c4ddc07315a8 | https://www.rcsb.org/structure/9INY | https://files.rcsb.org/download/9iny.cif.gz | VIRAL PROTEIN | 07/08/24 | 2024-07-08 | Structure of bacteriophage T5 tail tube | Escherichia phage T5 | Peng, Y.N., Liu, H.R. | 3.6 | 3.6 | false | ELECTRON MICROSCOPY | true | 4 |
9inz | mmcif/in/9inz.cif.gz | 265,569 | 4871adb72bd95726cc16d5de8d5ac50bb28c37c9 | https://www.rcsb.org/structure/9INZ | https://files.rcsb.org/download/9inz.cif.gz | MEMBRANE PROTEIN | 07/08/24 | 2024-07-08 | Hemichannel sub-structure of Cx43/GJA1 gap junction intercellular channel, treated with a 5-molar excess of carbenoxolone | Homo sapiens | Lee, C.W. | 3.34 | 3.34 | false | ELECTRON MICROSCOPY | true | 2 |
9io0 | mmcif/io/9io0.cif.gz | 152,988 | 2c459b3cc1069a809783bd7a5fc6b4fedd496bf8 | https://www.rcsb.org/structure/9IO0 | https://files.rcsb.org/download/9io0.cif.gz | RNA | 07/08/24 | 2024-07-08 | INTERACTION BETWEEN A FLUOROQUINOLONE DERIVATIVE KG022 AND RNAS: EFFECT OF BASE PAIRS 5' ADJACENT TO THE BULGE OUT ESIDUES | Ichijo, R., Kawai, G. | NOT | null | true | SOLUTION NMR | true | 2 | |
9io1 | mmcif/io/9io1.cif.gz | 153,087 | 745001685355af816ab8f320490fbc300fc33cfa | https://www.rcsb.org/structure/9IO1 | https://files.rcsb.org/download/9io1.cif.gz | RNA | 07/08/24 | 2024-07-08 | INTERACTION BETWEEN A FLUOROQUINOLONE DERIVATIVE KG022 AND RNAS: EFFECT OF BASE PAIRS 5' ADJACENT TO THE BULGE OUT RESIDUES | Ichijo, R., Kawai, G. | NOT | null | true | SOLUTION NMR | true | 8 | |
9io2 | mmcif/io/9io2.cif.gz | 181,960 | 2fda0ac23fe1c3a8f323c18d45eb56af39bd6c46 | https://www.rcsb.org/structure/9IO2 | https://files.rcsb.org/download/9io2.cif.gz | ANTIMICROBIAL PROTEIN | 07/08/24 | 2024-07-08 | Tilapia Piscidin-TP2-5 | Huang, Y.P., Chang, C.F. | NOT | null | true | SOLUTION NMR | true | 6 | |
9io3 | mmcif/io/9io3.cif.gz | 224,649 | 11c9d8db339369fa4f5a54a35260244d6fbfd2b1 | https://www.rcsb.org/structure/9IO3 | https://files.rcsb.org/download/9io3.cif.gz | ANTIMICROBIAL PROTEIN | 07/08/24 | 2024-07-08 | D-Amino Acid Substituted Antimicrobial Peptides Derived from Tilapia piscidin 4 | Huang, Y.P., Chang, C.F. | NOT | null | true | SOLUTION NMR | true | 2 | |
9io6 | mmcif/io/9io6.cif.gz | 285,360 | 0edcb5ab693908e85e69a8e16cd13f82d284aec0 | https://www.rcsb.org/structure/9IO6 | https://files.rcsb.org/download/9io6.cif.gz | HYDROLASE | 07/08/24 | 2024-07-08 | Crystal Structure of SME-1 Carbapenemase in complex with Nacubactam. | Serratia marcescens | Dhankhar, K., Hazra, S. | 2.07 | 2.07 | false | X-RAY DIFFRACTION | true | 6 |
9io7 | mmcif/io/9io7.cif.gz | 145,787 | 49c4314ff383b0a842bb888602bd9ef1540713ac | https://www.rcsb.org/structure/9IO7 | https://files.rcsb.org/download/9io7.cif.gz | HYDROLASE | 07/08/24 | 2024-07-08 | Crystal Structure of SME-1 Carbapenemase in complex with Zidebactam | Serratia marcescens | Dhankhar, K., Hazra, S. | 2.4 | 2.4 | false | X-RAY DIFFRACTION | true | 1 |
9ioa | mmcif/io/9ioa.cif.gz | 1,299,451 | 472a3429f825c5c02717c04b7b1fa7fc586e286c | https://www.rcsb.org/structure/9IOA | https://files.rcsb.org/download/9ioa.cif.gz | ANTIVIRAL PROTEIN/RNA | 07/08/24 | 2024-07-08 | Cryo-EM structure of the tetrameric DRT9-ncRNA complex | Escherichia coli | Zhang, J.T., Song, X.Y., Wei, X.Y., Jia, N. | 2.59 | 2.59 | false | ELECTRON MICROSCOPY | true | 1 |
9iob | mmcif/io/9iob.cif.gz | 1,939,347 | f51ff83ecb1764c20c59cd5aaa04fe9e599806d1 | https://www.rcsb.org/structure/9IOB | https://files.rcsb.org/download/9iob.cif.gz | ANTIVIRAL PROTEIN/RNA | 07/08/24 | 2024-07-08 | Cryo-EM structure of the hexameric DRT9-ncRNA complex | Escherichia coli | Zhang, J.T., Song, X.Y., Xia, Y.S., Liu, Y.J., Jia, N. | 2.62 | 2.62 | false | ELECTRON MICROSCOPY | true | 5 |
9iok | mmcif/io/9iok.cif.gz | 87,497 | 4644d0c9232c599becf8dde5ff74d0785b235801 | https://www.rcsb.org/structure/9IOK | https://files.rcsb.org/download/9iok.cif.gz | HYDROLASE | 07/09/24 | 2024-07-09 | Crystal Structure of Sortase E from Thermobifida fusca | Thermobifida fusca YX | Sharma, V., Murmu, S., Megta, A., Roy, R.P., Krishnan, V. | 1.8 | 1.8 | false | X-RAY DIFFRACTION | true | 4 |
9iol | mmcif/io/9iol.cif.gz | 229,298 | 9b329a3c550db76d1887fb8e116719b87d34604c | https://www.rcsb.org/structure/9IOL | https://files.rcsb.org/download/9iol.cif.gz | DNA BINDING PROTEIN/DNA | 07/09/24 | 2024-07-09 | Cryo-EM structure of the complex of DNA, Ku70/80, and laXLF. | Homo sapiens; SYNTHETIC CONSTRUCT | Liang, S. | 3.46 | 3.46 | false | ELECTRON MICROSCOPY | true | 8 |
9iom | mmcif/io/9iom.cif.gz | 76,839 | 7606d3c22349b979a34eab9e2ae297c6f1c1ef19 | https://www.rcsb.org/structure/9IOM | https://files.rcsb.org/download/9iom.cif.gz | LIPID BINDING PROTEIN | 07/09/24 | 2024-07-09 | CapE apo form | Escherichia coli | Gao, A., Wang, J.G. | 1.648 | 1.648 | false | X-RAY DIFFRACTION | true | 9 |
9ion | mmcif/io/9ion.cif.gz | 216,420 | 109eb64866d0a6a41dcbd0dbab8b7c9e1932014d | https://www.rcsb.org/structure/9ION | https://files.rcsb.org/download/9ion.cif.gz | LIPID BINDING PROTEIN | 07/09/24 | 2024-07-09 | Cryo-EM structure of cUA bound CapE filament | Escherichia coli | Gao, A., Wang, J.G. | 3.27 | 3.27 | false | ELECTRON MICROSCOPY | true | 7 |
9iop | mmcif/io/9iop.cif.gz | 220,444 | f176995c322fe58959a762d1da3355cab4af6e7d | https://www.rcsb.org/structure/9IOP | https://files.rcsb.org/download/9iop.cif.gz | LIPID BINDING PROTEIN | 07/09/24 | 2024-07-09 | Cryo-EM structure of cUA and MAFP bound CapE filament | Escherichia coli | Gao, A., Wang, J.G. | 3.33 | 3.33 | false | ELECTRON MICROSCOPY | true | 3 |
9ioq | mmcif/io/9ioq.cif.gz | 79,614 | 202baed39ca5a30dad4a2a730a25a7e97f047048 | https://www.rcsb.org/structure/9IOQ | https://files.rcsb.org/download/9ioq.cif.gz | LIPID BINDING PROTEIN | 07/09/24 | 2024-07-09 | Crystal structure of CapE bound cUA | Escherichia coli | Gao, A., Wang, J.G. | 1.999 | 1.999 | false | X-RAY DIFFRACTION | true | 6 |
9ior | mmcif/io/9ior.cif.gz | 153,426 | a1c6bbd455637080885acc62dad398fabd71a0cb | https://www.rcsb.org/structure/9IOR | https://files.rcsb.org/download/9ior.cif.gz | RNA | 07/09/24 | 2024-07-09 | INTERACTION BETWEEN A FLUOROQUINOLONE DERIVATIVE KG022 AND RNAS: EFFECT OF BASE PAIRS 5' ADJACENT TO THE BULGE OUT ESIDUES | Ichijo, R., Kawai, G. | NOT | null | true | SOLUTION NMR | true | 3 | |
9ios | mmcif/io/9ios.cif.gz | 153,215 | 70322e17ea6e98451e793088dc64274b25acce4c | https://www.rcsb.org/structure/9IOS | https://files.rcsb.org/download/9ios.cif.gz | RNA | 07/09/24 | 2024-07-09 | INTERACTION BETWEEN A FLUOROQUINOLONE DERIVATIVE KG022 AND RNAS: EFFECT OF BASE PAIRS 5' ADJACENT TO THE BULGE OUT ESIDUES | Ichijo, R., Kawai, G. | NOT | null | true | SOLUTION NMR | true | 8 | |
9iot | mmcif/io/9iot.cif.gz | 4,523,423 | 5870781130123fc0c95e82282718bcb47809ad79 | https://www.rcsb.org/structure/9IOT | https://files.rcsb.org/download/9iot.cif.gz | RIBOSOME | 07/09/24 | 2024-07-09 | Cryo-EM structure of Escherichia coli hibernating ribosome with RNase I mutant | Escherichia coli | Tanzawa, T., Minami, A., Yoshida, H., Kato, T., Ogawa, T. | 2.7 | 2.7 | false | ELECTRON MICROSCOPY | true | 1 |
9iou | mmcif/io/9iou.cif.gz | 153,085 | 8110c5ca60a61f35ada782add63f53b6ce8b026d | https://www.rcsb.org/structure/9IOU | https://files.rcsb.org/download/9iou.cif.gz | RNA | 07/09/24 | 2024-07-09 | INTERACTION BETWEEN A FLUOROQUINOLONE DERIVATIVE KG022 AND RNAS: EFFECT OF BASE PAIRS 5' ADJACENT TO THE BULGE OUT ESIDUES | Ichijo, R., Kawai, G. | NOT | null | true | SOLUTION NMR | true | 7 | |
9iov | mmcif/io/9iov.cif.gz | 1,503,612 | 3b8da3d205769a933f145e1afe346f23af1c4657 | https://www.rcsb.org/structure/9IOV | https://files.rcsb.org/download/9iov.cif.gz | OXIDOREDUCTASE | 07/09/24 | 2024-07-09 | Gossypol bound lactate dehydrogenase A | Homo sapiens | Ha, M.S., Han, C.W., Jeong, M.S., Jang, S.B. | 3.98 | 3.98 | false | X-RAY DIFFRACTION | true | 6 |
9iow | mmcif/io/9iow.cif.gz | 146,449 | 3178cf9a7c5759adb124e26c5ef7da9f60321980 | https://www.rcsb.org/structure/9IOW | https://files.rcsb.org/download/9iow.cif.gz | HYDROLASE | 07/09/24 | 2024-07-09 | Crystal Structure of SME-1 E166A Mutant in complex with Cefaclor | Serratia marcescens | Dhankhar, K., Hazra, S. | 2.4 | 2.4 | false | X-RAY DIFFRACTION | true | 9 |
9iox | mmcif/io/9iox.cif.gz | 944,454 | af0fc4c17616709eb2ebfd9fb271e00bae2f1f51 | https://www.rcsb.org/structure/9IOX | https://files.rcsb.org/download/9iox.cif.gz | PHOTOSYNTHESIS | 07/09/24 | 2024-07-09 | Cryo-EM structure of a TEF30-associated intermediate PSII core dimer complex, type II, from Chlamydomonas reinhardtii | Chlamydomonas reinhardtii | Wang, Y., Wang, C., Li, A., Liu, Z. | 3.3 | 3.3 | false | ELECTRON MICROSCOPY | true | 2 |
9ioy | mmcif/io/9ioy.cif.gz | 105,720 | 396e218cb28b806bf1b5e9560935f011317ea34e | https://www.rcsb.org/structure/9IOY | https://files.rcsb.org/download/9ioy.cif.gz | OXIDOREDUCTASE | 07/10/24 | 2024-07-10 | Isophthalate dioxygenase in complex with isophthalate | Comamonas testosteroni KF-1 | Jangid, K., Mahto, J.K., Kumar, P. | 3.3 | 3.3 | false | X-RAY DIFFRACTION | true | 4 |
9ioz | mmcif/io/9ioz.cif.gz | 807,382 | 81421001fc88626af4f5269f05a79c3b086e6292 | https://www.rcsb.org/structure/9IOZ | https://files.rcsb.org/download/9ioz.cif.gz | VIRAL PROTEIN | 07/10/24 | 2024-07-10 | Structure of the bacteriophage T5 tail tip complex | Escherichia phage T5 | Peng, Y.N., Liu, H.R. | 3.9 | 3.9 | false | ELECTRON MICROSCOPY | true | 8 |
9ip0 | mmcif/ip/9ip0.cif.gz | 746,029 | f4380bbc16c04339348ba9de78d5d1f5181721d6 | https://www.rcsb.org/structure/9IP0 | https://files.rcsb.org/download/9ip0.cif.gz | PLANT PROTEIN | 07/10/24 | 2024-07-10 | Cryo-EM structure of ClpB1 heptamer from Oryza sativa | Oryza sativa subsp. japonica | Jobichen, C., Saharan, K., Vasudevan, D., Sivaraman, J. | 4.0 | 4 | false | ELECTRON MICROSCOPY | true | 7 |
9ip2 | mmcif/ip/9ip2.cif.gz | 424,050 | 11c2009c34fdf51202b4132c742ea1955005ba51 | https://www.rcsb.org/structure/9IP2 | https://files.rcsb.org/download/9ip2.cif.gz | VIRAL PROTEIN | 07/10/24 | 2024-07-10 | Cryo-EM structure of the RNA-dependent RNA polymerase complex from Marburg virus | Escherichia coli K-12; Marburg virus - Musoke, Kenya, 1980 | Li, G., Du, T., Wang, J., Wu, S., Ru, H. | 2.7 | 2.7 | false | ELECTRON MICROSCOPY | true | 4 |
9ip3 | mmcif/ip/9ip3.cif.gz | 406,323 | 61e87f8e4135910d1cb73d380196c10fac8ba010 | https://www.rcsb.org/structure/9IP3 | https://files.rcsb.org/download/9ip3.cif.gz | VIRAL PROTEIN | 07/10/24 | 2024-07-10 | Cryo-EM structure of the RNA-dependent RNA polymerase complex in a compact conformation from Ebola virus | Ebola virus - Eckron (Zaire, 1976); Escherichia coli (strain K12) | Li, G., Du, T., Wang, J., Wu, S., Ru, H. | 3.1 | 3.1 | false | ELECTRON MICROSCOPY | true | 5 |
9ip4 | mmcif/ip/9ip4.cif.gz | 406,436 | 351ef3dc78c045b3c304330eaf34a3dbd17564d1 | https://www.rcsb.org/structure/9IP4 | https://files.rcsb.org/download/9ip4.cif.gz | VIRAL PROTEIN | 07/10/24 | 2024-07-10 | Cryo-EM structure of the RNA-dependent RNA polymerase complex from Marburg virus | Escherichia coli K-12; Marburg virus - Musoke, Kenya, 1980 | Li, G., Du, T., Wang, J., Wu, S., Ru, H. | 2.84 | 2.84 | false | ELECTRON MICROSCOPY | true | 7 |
9ip5 | mmcif/ip/9ip5.cif.gz | 208,153 | 0858aaf17217b3debba7898fbf863e8e89e18c45 | https://www.rcsb.org/structure/9IP5 | https://files.rcsb.org/download/9ip5.cif.gz | MEMBRANE PROTEIN | 07/10/24 | 2024-07-10 | Hemichannel sub-structure of Cx36/GJD2 gap junction intercellular channel (FN conformation) in brain polar lipid nanodiscs, treated with a 14-fold molar excess of carbenoxolone | Escherichia coli; Homo sapiens | Jang, H.S. | 3.52 | 3.52 | false | ELECTRON MICROSCOPY | true | 2 |
9ip6 | mmcif/ip/9ip6.cif.gz | 151,231 | ce45cbfbadf30b2eff8ce19ebc992b072897e89d | https://www.rcsb.org/structure/9IP6 | https://files.rcsb.org/download/9ip6.cif.gz | PLANT PROTEIN | 07/10/24 | 2024-07-10 | The complex of rice immune receptor RGA5-HMA8 with rice blast effector protein AVR1-CO39 | Oryza sativa; Pyricularia grisea | Zhang, X., Liu, J. | 2.63 | 2.63 | false | X-RAY DIFFRACTION | true | 2 |
9ip7 | mmcif/ip/9ip7.cif.gz | 164,445 | 20a069816278c0d37ed0cfb7690031d988d2c044 | https://www.rcsb.org/structure/9IP7 | https://files.rcsb.org/download/9ip7.cif.gz | ANTITUMOR PROTEIN/IMMUNE SYSTEM | 07/10/24 | 2024-07-10 | Local refinement structure of sEGFR and 528 Fv (from HL-type bispecific diabody Ex3) complex | Homo sapiens; synthetic construct | Sato, K., Uehara, S., Tsugita, A., Matsui, T., Asano, R., Makabe, K., Yokoyama, T., Tanaka, Y. | 3.21 | 3.21 | false | ELECTRON MICROSCOPY | true | 6 |
9ip8 | mmcif/ip/9ip8.cif.gz | 188,535 | 44b2bc49bb7ccdf5326928cdc4651bc34d90003e | https://www.rcsb.org/structure/9IP8 | https://files.rcsb.org/download/9ip8.cif.gz | ANTITUMOR PROTEIN/IMMUNE SYSTEM | 07/10/24 | 2024-07-10 | Poly-alanine model for HL-type bispecific diabody Ex3 composed of 528 and OKT3 Fvs in ternary complex with sEGFR and CD3gamma-epsilon (closed conformation) | Homo sapiens; synthetic construct | Sato, K., Uehara, S., Tsugita, A., Matsui, T., Asano, R., Makabe, K., Yokoyama, T., Tanaka, Y. | 3.91 | 3.91 | false | ELECTRON MICROSCOPY | true | 9 |
9ip9 | mmcif/ip/9ip9.cif.gz | 189,704 | 2e59a6ace7e4d21c0b64229daf2e928c1491c9d9 | https://www.rcsb.org/structure/9IP9 | https://files.rcsb.org/download/9ip9.cif.gz | ANTITUMOR PROTEIN/IMMUNE SYSTEM | 07/10/24 | 2024-07-10 | Poly-alanine model for HL-type bispecific diabody Ex3 composed of 528 and OKT3 Fvs in ternary complex with sEGFR and CD3gamma-epsilon (middle conformation) | Homo sapiens; synthetic construct | Sato, K., Uehara, S., Tsugita, A., Matsui, T., Asano, R., Makabe, K., Yokoyama, T., Tanaka, Y. | 3.64 | 3.64 | false | ELECTRON MICROSCOPY | true | 9 |
9ipa | mmcif/ip/9ipa.cif.gz | 188,909 | f157da186ecde9383169c978fefc03a1d816dde0 | https://www.rcsb.org/structure/9IPA | https://files.rcsb.org/download/9ipa.cif.gz | ANTITUMOR PROTEIN/IMMUNE SYSTEM | 07/10/24 | 2024-07-10 | Poly-alanine model for HL-type bispecific diabody Ex3 composed of 528 and OKT3 Fvs in ternary complex with sEGFR and CD3gamma-epsilon (open conformation) | Homo sapiens; synthetic construct | Sato, K., Uehara, S., Tsugita, A., Matsui, T., Asano, R., Makabe, K., Yokoyama, T., Tanaka, Y. | 3.85 | 3.85 | false | ELECTRON MICROSCOPY | true | 4 |
9ipc | mmcif/ip/9ipc.cif.gz | 193,495 | c52dce9618cfef6c221279f2922c7e00066a5ac6 | https://www.rcsb.org/structure/9IPC | https://files.rcsb.org/download/9ipc.cif.gz | ANTITUMOR PROTEIN/IMMUNE SYSTEM | 07/10/24 | 2024-07-10 | Poly-alanine model for LH-type bispecific diabody Ex3 composed of 528 and OKT3 Fvs in ternary complex with sEGFR and CD3gamma-epsilon (closed conformation) | Homo sapiens; synthetic construct | Sato, K., Uehara, S., Tsugita, A., Matsui, T., Asano, R., Makabe, K., Yokoyama, T., Tanaka, Y. | 3.4 | 3.4 | false | ELECTRON MICROSCOPY | true | 2 |
9ipd | mmcif/ip/9ipd.cif.gz | 192,548 | 9fde1167db09986a98848d3ac4a0a944e7272707 | https://www.rcsb.org/structure/9IPD | https://files.rcsb.org/download/9ipd.cif.gz | ANTITUMOR PROTEIN/IMMUNE SYSTEM | 07/10/24 | 2024-07-10 | Poly-alanine model for LH-type bispecific diabody Ex3 composed of 528 and OKT3 Fvs in ternary complex with sEGFR and CD3gamma-epsilon (middle conformation) | Homo sapiens; synthetic construct | Sato, K., Uehara, S., Tsugita, A., Matsui, T., Asano, R., Makabe, K., Yokoyama, T., Tanaka, Y. | 3.29 | 3.29 | false | ELECTRON MICROSCOPY | true | 5 |
9ipe | mmcif/ip/9ipe.cif.gz | 192,109 | 7c11cefa80bd5a663e6ff972eea89708950fb43c | https://www.rcsb.org/structure/9IPE | https://files.rcsb.org/download/9ipe.cif.gz | ANTITUMOR PROTEIN/IMMUNE SYSTEM | 07/10/24 | 2024-07-10 | Poly-alanine model for LH-type bispecific diabody Ex3 composed of 528 and OKT3 Fvs in ternary complex with sEGFR and CD3gamma-epsilon (open conformation) | Homo sapiens; synthetic construct | Sato, K., Uehara, S., Tsugita, A., Matsui, T., Asano, R., Makabe, K., Yokoyama, T., Tanaka, Y. | 3.31 | 3.31 | false | ELECTRON MICROSCOPY | true | 2 |
9ipl | mmcif/ip/9ipl.cif.gz | 93,020 | 27e18d2885a2f6e7865eccc705ccb1e9cc427e9c | https://www.rcsb.org/structure/9IPL | https://files.rcsb.org/download/9ipl.cif.gz | METAL BINDING PROTEIN | 07/10/24 | 2024-07-10 | A tetrapyrrole binding domain variant of CoaR in closed conformation at 2.28 angstrom resolution | Synechocystis sp. (strain PCC 6803 / Kazusa) | Liu, X.C. | 2.28 | 2.28 | false | X-RAY DIFFRACTION | true | 4 |
9ipm | mmcif/ip/9ipm.cif.gz | 222,165 | 53b7e4bff422d9687ca80d0c3243bece5d7616ce | https://www.rcsb.org/structure/9IPM | https://files.rcsb.org/download/9ipm.cif.gz | MEMBRANE PROTEIN | 07/11/24 | 2024-07-11 | Hemichannel sub-structure of Cx36/GJD2 gap junction intercellular channel (FN conformation) in soybean polar lipid nanodiscs, treated with a 20-fold molar excess of carbenoxolone | Escherichia coli; Homo sapiens | Jang, H.S. | 3.56 | 3.56 | false | ELECTRON MICROSCOPY | true | 6 |
9ipo | mmcif/ip/9ipo.cif.gz | 414,048 | 2fc05bb402adb97e12fce32bb02e40194e86490a | https://www.rcsb.org/structure/9IPO | https://files.rcsb.org/download/9ipo.cif.gz | MEMBRANE PROTEIN | 07/11/24 | 2024-07-11 | Hemichannel sub-structure of Cx36/GJD2 gap junction intercellular channel (FN conformation) in soybean polar lipid nanodiscs, treated with a 10-fold molar excess of carbenoxolone | Escherichia coli; Homo sapiens | Jang, H.S. | 2.41 | 2.41 | false | ELECTRON MICROSCOPY | true | 2 |
9ipr | mmcif/ip/9ipr.cif.gz | 231,306 | c23b96000d944786bb44038372e22d648afc90a7 | https://www.rcsb.org/structure/9IPR | https://files.rcsb.org/download/9ipr.cif.gz | BIOSYNTHETIC PROTEIN | 07/11/24 | 2024-07-11 | Crystal structure of CTB10-M1 | Cercospora sp. JNU001 | Fu, K., Rao, Y.J. | 1.94 | 1.94 | false | X-RAY DIFFRACTION | true | 3 |
9ipt | mmcif/ip/9ipt.cif.gz | 166,740 | 72a8adbfb546c1ba4f05c56588c7f539b10988ba | https://www.rcsb.org/structure/9IPT | https://files.rcsb.org/download/9ipt.cif.gz | TRANSCRIPTION | 07/11/24 | 2024-07-11 | Crystal structure of a TetR family regulator AmvR from Acinetobacter baumannii with spermidine bound | Acinetobacter baumannii | Ma, J.M., Ge, H.H., Wang, N. | 2.5 | 2.5 | false | X-RAY DIFFRACTION | true | 8 |
9ipu | mmcif/ip/9ipu.cif.gz | 611,428 | 4e3386e272d6b2ae2b31628fad2a4fee19181853 | https://www.rcsb.org/structure/9IPU | https://files.rcsb.org/download/9ipu.cif.gz | NUCLEAR PROTEIN | 07/11/24 | 2024-07-11 | cryo-EM structure of the RNF168(1-193)/UbcH5c-Ub ubiquitylation module bound to H1.0-K63-Ub3 modified chromatosome | Homo sapiens | Ai, H.S., Deng, Z.H., Liu, L. | 4.3 | 4.3 | false | ELECTRON MICROSCOPY | true | 5 |
9ipv | mmcif/ip/9ipv.cif.gz | 219,656 | 89a0f61a0f4f92596ea068d07205bcdaac51bf87 | https://www.rcsb.org/structure/9IPV | https://files.rcsb.org/download/9ipv.cif.gz | MEMBRANE PROTEIN | 07/11/24 | 2024-07-11 | Structure of JR14a-C3aR-Gi-scFv16 complex | Homo sapiens | Kim, J., Ko, S., Choi, H.-J. | 2.53 | 2.53 | false | ELECTRON MICROSCOPY | true | 3 |
9ipw | mmcif/ip/9ipw.cif.gz | 332,286 | 0f4f43a3386f63040d7914f82d39c32134dbac75 | https://www.rcsb.org/structure/9IPW | https://files.rcsb.org/download/9ipw.cif.gz | PROTEIN BINDING | 07/11/24 | 2024-07-11 | Crystal structure of VHL-EloB-EloC in complex with a fragment compound 7HC_5(D3) | Homo sapiens | Lee, B.I., Kim, Y. | 3 | 3 | false | X-RAY DIFFRACTION | true | 6 |
9ipy | mmcif/ip/9ipy.cif.gz | 89,763 | 2b27b032e76b79260bebcd1efe7209c913f97826 | https://www.rcsb.org/structure/9IPY | https://files.rcsb.org/download/9ipy.cif.gz | MEMBRANE PROTEIN | 07/12/24 | 2024-07-12 | Structure of JR14a-bound human C3aR | Escherichia coli; Homo sapiens | Kim, J., Ko, S., Choi, H.-J. | 3.5 | 3.5 | false | ELECTRON MICROSCOPY | true | 3 |
9iq3 | mmcif/iq/9iq3.cif.gz | 103,233 | 8092d2e375df8d068542167897805b69b9a2fb77 | https://www.rcsb.org/structure/9IQ3 | https://files.rcsb.org/download/9iq3.cif.gz | BIOSYNTHETIC PROTEIN | 07/12/24 | 2024-07-12 | AkaM,SnoaL-lile Protein | Streptomyces sp. NPS-554 | Zhang, B., Ma, X.X., Zhu, A., Ge, H.M. | 2.5 | 2.5 | false | X-RAY DIFFRACTION | true | 9 |
9iq5 | mmcif/iq/9iq5.cif.gz | 129,152 | 1b72418091ae441658118e85fa72afe3a12f2ddd | https://www.rcsb.org/structure/9IQ5 | https://files.rcsb.org/download/9iq5.cif.gz | BIOSYNTHETIC PROTEIN | 07/12/24 | 2024-07-12 | CatM, SnoaL-like protein | Streptantibioticus cattleyicolor (strain ATCC 35852 / DSM 46488 / JCM 4925 / NBRC 14057 / NRRL 8057) | Zhang, B., Zhu, A., Ma, X.X., Ge, H.M. | 2.06 | 2.06 | false | X-RAY DIFFRACTION | true | 6 |
9iq7 | mmcif/iq/9iq7.cif.gz | 135,318 | ebb4810f1f48a9ff17b0f3a5e368421610b6c40a | https://www.rcsb.org/structure/9IQ7 | https://files.rcsb.org/download/9iq7.cif.gz | BIOSYNTHETIC PROTEIN | 07/12/24 | 2024-07-12 | SacM-homologous of AkaM | Saccharothrix syringae | Zhang, B., Ge, H.M. | 1.77 | 1.77 | false | X-RAY DIFFRACTION | true | 9 |
9iq8 | mmcif/iq/9iq8.cif.gz | 116,230 | 75c329cdb11968926df6221c694afe867f32f405 | https://www.rcsb.org/structure/9IQ8 | https://files.rcsb.org/download/9iq8.cif.gz | SIGNALING PROTEIN | 07/12/24 | 2024-07-12 | Ankyrin-like protein, AnkB | Acinetobacter baumannii | Sung, J.H., Park, H.H. | 2.42 | 2.42 | false | X-RAY DIFFRACTION | true | 1 |
9iqa | mmcif/iq/9iqa.cif.gz | 488,204 | 267193d2d49d92cbf83b378f555caa60e82563d1 | https://www.rcsb.org/structure/9IQA | https://files.rcsb.org/download/9iqa.cif.gz | LYASE | 07/12/24 | 2024-07-12 | structure of the oleate hydratase V206L-mutant from Staphylococcus aureus | Staphylococcus aureus | Xue, S., Feng, T. | 2.09 | 2.09 | false | X-RAY DIFFRACTION | true | 9 |
9iqb | mmcif/iq/9iqb.cif.gz | 1,105,877 | 41837139e39ef3a5431e34a7d38d88c5a3137a50 | https://www.rcsb.org/structure/9IQB | https://files.rcsb.org/download/9iqb.cif.gz | HYDROLASE | 07/12/24 | 2024-07-12 | Crystal structure of beta-glucosidase from Acetivibrio thermocellus | Acetivibrio thermocellus | Kamale, C., Bhaumik, P. | 3 | 3 | false | X-RAY DIFFRACTION | true | 7 |
9iqc | mmcif/iq/9iqc.cif.gz | 86,875 | ef6326a4a802ea3ebb406ac196b36d2ad69524b4 | https://www.rcsb.org/structure/9IQC | https://files.rcsb.org/download/9iqc.cif.gz | HYDROLASE | 07/12/24 | 2024-07-12 | Monooxygenase dependent on riboflavin with dCMP and FAD | Phage #D | Yu, H., Lianrong, W. | 1.69 | 1.69 | false | X-RAY DIFFRACTION | true | 7 |
9iqe | mmcif/iq/9iqe.cif.gz | 218,582 | 06fe0d9b618c51eae807e5a55cffc3222fd80fe0 | https://www.rcsb.org/structure/9IQE | https://files.rcsb.org/download/9iqe.cif.gz | TRANSPORT PROTEIN | 07/12/24 | 2024-07-12 | Cryo-EM structure of MsRv1273c/72c from Mycobacterium smegmatis in the ADP-bound IFasym-3 (peptidisc) state (ATP 37degrees C treated) | Mycolicibacterium smegmatis MC2 155 | Lan, Y., Li, J. | 3.78 | 3.78 | false | ELECTRON MICROSCOPY | true | 1 |
9iqf | mmcif/iq/9iqf.cif.gz | 219,724 | 4c5b6b8d662463df898198dad96810cc037cb76a | https://www.rcsb.org/structure/9IQF | https://files.rcsb.org/download/9iqf.cif.gz | TRANSPORT PROTEIN | 07/12/24 | 2024-07-12 | Cryo-EM structure of MsRv1273c/72c from Mycobacterium smegmatis in the ADP-bound IFasym-3 (peptidisc) state (ADP 4degrees C treated) | Mycolicibacterium smegmatis MC2 155 | Lan, Y., Li, J. | 4.01 | 4.01 | false | ELECTRON MICROSCOPY | true | 1 |
9iqg | mmcif/iq/9iqg.cif.gz | 246,443 | e350ec6bb3c8010268bb573399a557004f0d00c6 | https://www.rcsb.org/structure/9IQG | https://files.rcsb.org/download/9iqg.cif.gz | TRANSPORT PROTEIN | 07/12/24 | 2024-07-12 | Cryo-EM structure of MsRv1273c/72c from Mycobacterium smegmatis in the ATP|ADP+Vi-bound Occ (Vi) state | Mycolicibacterium smegmatis MC2 155 | Lan, Y., Yu, J., Li, J. | 2.7 | 2.7 | false | ELECTRON MICROSCOPY | true | 4 |
9iqh | mmcif/iq/9iqh.cif.gz | 190,607 | 93edd2632011d8b8603f3bcadb62355c45a505eb | https://www.rcsb.org/structure/9IQH | https://files.rcsb.org/download/9iqh.cif.gz | LYASE | 07/12/24 | 2024-07-12 | Crystal structure of sulfhydrylase | Acidithiobacillus | Li, X.J., Chen, L.X., Lin, J.Q. | 2.27 | 2.27 | false | X-RAY DIFFRACTION | true | 2 |
9iqi | mmcif/iq/9iqi.cif.gz | 458,728 | 3053748c34f52a1e6fed6b10cd7622582dd65993 | https://www.rcsb.org/structure/9IQI | https://files.rcsb.org/download/9iqi.cif.gz | LYASE | 07/12/24 | 2024-07-12 | Structure of oleate hydratase mutant - V135A/L212V from Staphylococcus aureus in the complex with FAD | Staphylococcus aureus | Xue, S., Feng, T. | 2.44 | 2.44 | false | X-RAY DIFFRACTION | true | 6 |
9iqj | mmcif/iq/9iqj.cif.gz | 512,796 | 9443737e661b938e5e7fe06dd855b3c39579b717 | https://www.rcsb.org/structure/9IQJ | https://files.rcsb.org/download/9iqj.cif.gz | LYASE | 07/12/24 | 2024-07-12 | Structure of oleate hydratase mutant L151V from Staphylococcus aureus in the complex with linoleic acid | Staphylococcus aureus | Xue, S., Feng, T. | 1.64 | 1.64 | false | X-RAY DIFFRACTION | true | 3 |
9iql | mmcif/iq/9iql.cif.gz | 146,951 | 6fe09b02094872262bbbb91396e795fae146b3a4 | https://www.rcsb.org/structure/9IQL | https://files.rcsb.org/download/9iql.cif.gz | BIOSYNTHETIC PROTEIN | 07/12/24 | 2024-07-12 | SacM in complex with L6S | Saccharothrix syringae | Zhang, B., Ge, H.M. | 1.65 | 1.65 | false | X-RAY DIFFRACTION | true | 6 |
9iqn | mmcif/iq/9iqn.cif.gz | 77,208 | 33f43c10c48527eb8343c295872e6abc5a8db42e | https://www.rcsb.org/structure/9IQN | https://files.rcsb.org/download/9iqn.cif.gz | BIOSYNTHETIC PROTEIN | 07/12/24 | 2024-07-12 | CatM-W86A-L6R, a SnoaL-like protein in complex with substrate mimic L6R | Streptantibioticus cattleyicolor (strain ATCC 35852 / DSM 46488 / JCM 4925 / NBRC 14057 / NRRL 8057) | Zhang, B., Ge, H.M. | 2 | 2 | false | X-RAY DIFFRACTION | true | 6 |
9iqo | mmcif/iq/9iqo.cif.gz | 868,506 | 4546abbab158ea40434e1275d807d6976e64f0dc | https://www.rcsb.org/structure/9IQO | https://files.rcsb.org/download/9iqo.cif.gz | PLANT PROTEIN | 07/13/24 | 2024-07-13 | Cryo-EM structure of the Rubisco from thermophilic purple bacterial Rubisco | Thermochromatium tepidum ATCC 43061 | Chang, S.H., Chen, J.H. | 1.55 | 1.55 | false | ELECTRON MICROSCOPY | true | 3 |
9iqp | mmcif/iq/9iqp.cif.gz | 326,805 | ccfe8cd03c8f3a6446ca34b94cf9c4b183348e33 | https://www.rcsb.org/structure/9IQP | https://files.rcsb.org/download/9iqp.cif.gz | VIRAL PROTEIN/IMMUNE SYSTEM | 07/13/24 | 2024-07-13 | Crystal structure of the Wuhan SARS-CoV-2 Spike RBD (319-541) complexed with 1p1B10 nanobody | Camelus bactrianus; Severe acute respiratory syndrome coronavirus 2 | Sluchanko, N.N., Matyuta, I.O., Dronova, E.A., Favorskaya, I.A., Esmagambetov, I.B., Shcheblyakov, D.V., Logunov, D.Y., Gintsburg, A.L., Popov, V.O., Boyko, K.M. | 1.55 | 1.55 | false | X-RAY DIFFRACTION | true | 1 |
9iqq | mmcif/iq/9iqq.cif.gz | 405,975 | e4ab714982babc117ebf4a420a7483b291782ef0 | https://www.rcsb.org/structure/9IQQ | https://files.rcsb.org/download/9iqq.cif.gz | TRANSFERASE | 07/13/24 | 2024-07-13 | Crystal structure of PKM2 in complex with a natural activator | Homo sapiens | Chen, T.J., Wang, W.C. | 2.7 | 2.7 | false | X-RAY DIFFRACTION | true | 7 |
9iqr | mmcif/iq/9iqr.cif.gz | 76,479 | bb783575b90593a6edbd1395c3e98dadf02e421a | https://www.rcsb.org/structure/9IQR | https://files.rcsb.org/download/9iqr.cif.gz | MEMBRANE PROTEIN | 07/13/24 | 2024-07-13 | Cryo-EM structure of MT3-alpha2AAR | Dendroaspis angusticeps; Homo sapiens; synthetic construct | Zhong, Y.X., Tao, H.H., Tao, Y.Y. | 3.4 | 3.4 | false | ELECTRON MICROSCOPY | true | 3 |
9iqs | mmcif/iq/9iqs.cif.gz | 77,394 | 3f30db936b680411ec0d40827ab0f44b1b978070 | https://www.rcsb.org/structure/9IQS | https://files.rcsb.org/download/9iqs.cif.gz | MEMBRANE PROTEIN | 07/13/24 | 2024-07-13 | Cryo-EM structure of MT3-Muscarinic acetylcholine receptor 4 | Dendroaspis angusticeps; Homo sapiens; synthetic construct | Zhong, Y.X., Tao, H.H., Tao, Y.Y. | 3.6 | 3.6 | false | ELECTRON MICROSCOPY | true | 4 |
9iqt | mmcif/iq/9iqt.cif.gz | 219,791 | b3649f2a419c4e402a2c98ca965b687f06433a36 | https://www.rcsb.org/structure/9IQT | https://files.rcsb.org/download/9iqt.cif.gz | MEMBRANE PROTEIN/IMMUNE SYSTEM | 07/13/24 | 2024-07-13 | structure of niacin-HCA2-Gi | Homo sapiens | Liu, Y., Zhou, Z. | 2.9 | 2.9 | false | ELECTRON MICROSCOPY | true | 3 |
9iqu | mmcif/iq/9iqu.cif.gz | 126,850 | f1beaf70221728457b23bde69bfbb31a369db811 | https://www.rcsb.org/structure/9IQU | https://files.rcsb.org/download/9iqu.cif.gz | HYDROLASE | 07/13/24 | 2024-07-13 | phage HY126 dCMP hydroxylase-AfhB with sustrate dCMP | Phage #D | Yu, H., Lianrong, W. | 1.96 | 1.96 | false | X-RAY DIFFRACTION | true | 8 |
9iqv | mmcif/iq/9iqv.cif.gz | 77,199 | a348e2e371a37bcc597637d1e664c79131cbd82d | https://www.rcsb.org/structure/9IQV | https://files.rcsb.org/download/9iqv.cif.gz | MEMBRANE PROTEIN | 07/13/24 | 2024-07-13 | Cryo-EM structure of MT3-alpha1AAR | Dendroaspis angusticeps; Homo sapiens; synthetic construct | Zhong, Y.X., Tao, H.H., Tao, Y.Y. | 3.3 | 3.3 | false | ELECTRON MICROSCOPY | true | 5 |
9iqx | mmcif/iq/9iqx.cif.gz | 499,518 | 2065ead4bbe7d1fe8c3e9ac030a83541827cd579 | https://www.rcsb.org/structure/9IQX | https://files.rcsb.org/download/9iqx.cif.gz | MEMBRANE PROTEIN | 07/13/24 | 2024-07-13 | Cryo-EM structure of the human TRPV4-RhoA in complex with AH001 | Homo sapiens | Yuan, Z., Ruan, S.S., Li, S.L. | 3.37 | 3.37 | false | ELECTRON MICROSCOPY | true | 2 |
9iqy | mmcif/iq/9iqy.cif.gz | 135,404 | 433e8e78dd030090de674ff04468025d3670262d | https://www.rcsb.org/structure/9IQY | https://files.rcsb.org/download/9iqy.cif.gz | MEMBRANE PROTEIN | 07/13/24 | 2024-07-13 | Cryo-EM structure of human TRPV4 intracellular domain in complex with GTPase RhoA | Homo sapiens | Yuan, Z., Ruan, S.S., Li, S.L. | 3.16 | 3.16 | false | ELECTRON MICROSCOPY | true | 7 |
9iqz | mmcif/iq/9iqz.cif.gz | 306,040 | bc58597bd50168ade8e6e792051d7b267fa3223f | https://www.rcsb.org/structure/9IQZ | https://files.rcsb.org/download/9iqz.cif.gz | TRANSFERASE | 07/13/24 | 2024-07-13 | phage HY126 glycosyltransferase | Phage #D | Yu, H. | 2.61 | 2.61 | false | X-RAY DIFFRACTION | true | 7 |
9ir0 | mmcif/ir/9ir0.cif.gz | 185,876 | b0562f6a7c07799ce367be24c4bcb0672cd220b2 | https://www.rcsb.org/structure/9IR0 | https://files.rcsb.org/download/9ir0.cif.gz | TRANSFERASE | 07/13/24 | 2024-07-13 | phage HY126 glycosyltransferase with UDP | Phage #D | Yu, H., Lianrong, W. | 2.46 | 2.46 | false | X-RAY DIFFRACTION | true | 9 |
9ir1 | mmcif/ir/9ir1.cif.gz | 71,586 | 0fd64f92d4b11809c889f946a1200adeda593b1b | https://www.rcsb.org/structure/9IR1 | https://files.rcsb.org/download/9ir1.cif.gz | BIOSYNTHETIC PROTEIN | 07/13/24 | 2024-07-13 | Crystal structure of CTB10-M40BpA | Cercospora sp. JNU001 | Fu, K., Rao, Y.J. | 1.77 | 1.77 | false | X-RAY DIFFRACTION | true | 5 |
9ir2 | mmcif/ir/9ir2.cif.gz | 142,685 | 991688d93878e97efd039653426f1900603d8f21 | https://www.rcsb.org/structure/9IR2 | https://files.rcsb.org/download/9ir2.cif.gz | HYDROLASE | 07/13/24 | 2024-07-13 | phage HY126 hydroxylase AfhB with cofactor FMN and substrate dCMP | Phage #D | Yu, H., Lianrong, W. | 1.31 | 1.31 | false | X-RAY DIFFRACTION | true | 8 |
9ir3 | mmcif/ir/9ir3.cif.gz | 377,169 | 6245a4796b649d506b6aa579da04698c003c9bd7 | https://www.rcsb.org/structure/9IR3 | https://files.rcsb.org/download/9ir3.cif.gz | TRANSCRIPTION | 07/13/24 | 2024-07-13 | Cryo-EM structure of Nipah virus L-P polymerase complex | Nipah virus | Shi, Y., Peng, Q. | 3.19 | 3.19 | false | ELECTRON MICROSCOPY | true | 5 |
9ir4 | mmcif/ir/9ir4.cif.gz | 373,754 | 50d748b327ef227df1f51346cef119e6625925b3 | https://www.rcsb.org/structure/9IR4 | https://files.rcsb.org/download/9ir4.cif.gz | TRANSCRIPTION | 07/14/24 | 2024-07-14 | Cryo-EM structure of Nipah virus L-P (H1165Y) polymerase complex | Nipah virus | Shi, Y., Peng, Q. | 3.01 | 3.01 | false | ELECTRON MICROSCOPY | true | 8 |
9ir5 | mmcif/ir/9ir5.cif.gz | 106,558 | 828b6c24bcd3cac21922f6754f113c6f6be1bef8 | https://www.rcsb.org/structure/9IR5 | https://files.rcsb.org/download/9ir5.cif.gz | LIGASE | 07/14/24 | 2024-07-14 | Crystal structure of apo-form UDP-N-acetylmuramic Acid L-alanine ligase (MurC) from Roseburia faecis | Roseburia faecis | Wang, Y.X., Du, Y.H. | 2.36 | 2.36 | false | X-RAY DIFFRACTION | true | 5 |
9ir6 | mmcif/ir/9ir6.cif.gz | 363,879 | 604ca5da33923525726cf0f545ef49248d13d569 | https://www.rcsb.org/structure/9IR6 | https://files.rcsb.org/download/9ir6.cif.gz | LIGASE | 07/14/24 | 2024-07-14 | Crystal structure of UDP-N-acetylmuramic Acid L-alanine ligase (MurC) from Roseburia faecis in complex with UNAM | Roseburia faecis | Wang, Y.X., Du, Y.H. | 2.43 | 2.43 | false | X-RAY DIFFRACTION | true | 2 |
9ir8 | mmcif/ir/9ir8.cif.gz | 235,856 | 16cc8d74a8be329f704096b167760e981b22c240 | https://www.rcsb.org/structure/9IR8 | https://files.rcsb.org/download/9ir8.cif.gz | VIRAL PROTEIN | 07/15/24 | 2024-07-15 | CCoV-HuPn-2018 3CL protease (3CLpro) in complex with compound 6 | Canine coronavirus 2 | Nie, T.Q., Su, H.X., Li, M.J., Xu, Y.C. | 2.12 | 2.12 | false | X-RAY DIFFRACTION | true | 2 |
9ir9 | mmcif/ir/9ir9.cif.gz | 137,042 | 47d64607dfa3a4f38d583541d04816edfe113458 | https://www.rcsb.org/structure/9IR9 | https://files.rcsb.org/download/9ir9.cif.gz | VIRAL PROTEIN | 07/15/24 | 2024-07-15 | SARS-CoV-2 3CL protease (3CLpro) in complex with compound 6 | Severe acute respiratory syndrome coronavirus 2 | Nie, T.Q., Su, H.X., Li, M.J., Xu, Y.C. | 1.49 | 1.49 | false | X-RAY DIFFRACTION | true | 7 |
9ira | mmcif/ir/9ira.cif.gz | 136,722 | 9321fb3bc242611791572318289dee1d77e6ac4f | https://www.rcsb.org/structure/9IRA | https://files.rcsb.org/download/9ira.cif.gz | VIRAL PROTEIN | 07/15/24 | 2024-07-15 | IBV 3CL protease (3CLpro) in complex with compound 6 | Avian infectious bronchitis virus (strain Beaudette) | Nie, T.Q., Su, H.X., Li, M.J., Xu, Y.C. | 1.66 | 1.66 | false | X-RAY DIFFRACTION | true | 1 |
9irb | mmcif/ir/9irb.cif.gz | 150,417 | 8646741cf90ec4ed307aeedf0e9a36b5f5980c66 | https://www.rcsb.org/structure/9IRB | https://files.rcsb.org/download/9irb.cif.gz | MEMBRANE PROTEIN/IMMUNE SYSTEM | 07/15/24 | 2024-07-15 | CryoEM structure of hSLC15A4+Fab107 | Homo sapiens; Mus musculus | Zhu, Y.L., Zhang, Q.X., Gao, P. | 3.15 | 3.15 | false | ELECTRON MICROSCOPY | true | 4 |
9irc | mmcif/ir/9irc.cif.gz | 158,515 | 22935c71a79f7ce711dd9beeb2fb3f9a7b8a7536 | https://www.rcsb.org/structure/9IRC | https://files.rcsb.org/download/9irc.cif.gz | MEMBRANE PROTEIN/IMMUNE SYSTEM | 07/15/24 | 2024-07-15 | CyroEM structure of hSLC15A4+TASL+Fab235 | Homo sapiens; Mus musculus | Zhu, Y.L., Zhang, Q.X., Gao, P. | 2.82 | 2.82 | false | ELECTRON MICROSCOPY | true | 5 |
9ird | mmcif/ir/9ird.cif.gz | 264,755 | f692063391fd7deb718e906a22dba6eb0790ca1b | https://www.rcsb.org/structure/9IRD | https://files.rcsb.org/download/9ird.cif.gz | IMMUNE SYSTEM | 07/15/24 | 2024-07-15 | Cryo-EM structure of BTN2A1-BTN3A1-BTN3A2 mutant (BTN3A1 H381R, BTN2A1 R477A/T510A) in complex with Vgamma9-Vdelta2 TCR (G115 genotype) | Homo sapiens | Xin, W., Huang, B., Su, Q., Zhou, Q. | 3.2 | 3.2 | false | ELECTRON MICROSCOPY | true | 6 |
9ire | mmcif/ir/9ire.cif.gz | 76,985 | d179f669f3c75fa874a5bede140c2f482660a6a3 | https://www.rcsb.org/structure/9IRE | https://files.rcsb.org/download/9ire.cif.gz | METAL BINDING PROTEIN | 07/15/24 | 2024-07-15 | CRYSTAL STRUCTURE OF Bacillus cereus FERRIC UPTAKE REGULATOR | Bacillus cereus VD154 | Gabdulkhakov, A.G., Tishchenko, T.V., Kostareva, O.S. | 3 | 3 | false | X-RAY DIFFRACTION | true | 3 |
9irf | mmcif/ir/9irf.cif.gz | 560,839 | fa9766768bb2c769fd2a97c501ce49136b872dc8 | https://www.rcsb.org/structure/9IRF | https://files.rcsb.org/download/9irf.cif.gz | RNA BINDING PROTEIN/RNA | 07/15/24 | 2024-07-15 | Cryo-EM Structure of csy1-4 with crRNA | Pectobacterium atrosepticum SCRI1043 | Gao, X., Cui, S., Zhu, H., Zhu, K., Shang, K. | 2.8 | 2.8 | false | ELECTRON MICROSCOPY | true | 2 |
9iri | mmcif/ir/9iri.cif.gz | 570,362 | d4b706657e03d3038ed69d172c9a06300aecb6e8 | https://www.rcsb.org/structure/9IRI | https://files.rcsb.org/download/9iri.cif.gz | RNA BINDING PROTEIN/RNA | 07/16/24 | 2024-07-16 | Cryo-EM Structure of D-RNA | Pectobacterium atrosepticum SCRI1043; Thiocystis violascens DSM 198 | Gao, X., Cui, S., Zhu, H., Zhu, K., Shang, K. | 2.8 | 2.8 | false | ELECTRON MICROSCOPY | true | 7 |
9irk | mmcif/ir/9irk.cif.gz | 422,720 | a112564556c72af9b3e246ea78ed6a5b7dd2ff8a | https://www.rcsb.org/structure/9IRK | https://files.rcsb.org/download/9irk.cif.gz | GENE REGULATION | 07/16/24 | 2024-07-16 | Cryo-EM structure of PhyB(Y276H,1-908)-PIF6beta complex | Arabidopsis thaliana | Jia, H.L., Guan, Z.Y., Ding, J.Y., Wang, X.Y., Ma, L., Yin, P. | 2.8 | 2.8 | false | ELECTRON MICROSCOPY | true | 7 |
9irl | mmcif/ir/9irl.cif.gz | 115,137 | caf92248a70fdd54179e49ccc9b3c338eda85462 | https://www.rcsb.org/structure/9IRL | https://files.rcsb.org/download/9irl.cif.gz | PROTEIN BINDING | 07/16/24 | 2024-07-16 | Crystal structure analysis of LW-Srci-2o in complex with c-Src. | Homo sapiens | Xu, D., Huiming, Z., Hongchan, H. | 2.031 | 2.031 | false | X-RAY DIFFRACTION | true | 9 |
9irm | mmcif/ir/9irm.cif.gz | 533,402 | caed94247a375384964edd50adb4221fd368d50f | https://www.rcsb.org/structure/9IRM | https://files.rcsb.org/download/9irm.cif.gz | HYDROLASE | 07/16/24 | 2024-07-16 | Structure of ClpP from Staphylococcus aureus in complex with ZG283 | Staphylococcus aureus | Wei, B.Y., Wang, P.Y., Zhang, T., Yang, C.-G. | 1.81 | 1.81 | false | X-RAY DIFFRACTION | true | 4 |
9irp | mmcif/ir/9irp.cif.gz | 1,106,032 | 1ecf5ae4d2ab0a1712bb3ecc46d706ecbf7fb9b3 | https://www.rcsb.org/structure/9IRP | https://files.rcsb.org/download/9irp.cif.gz | HYDROLASE | 07/16/24 | 2024-07-16 | Structure of ClpP from Staphylococcus aureus in complex with ZG297 | Staphylococcus aureus | Wei, B.Y., Wang, P.Y., Zhang, T., Yang, C.-G. | 1.901 | 1.901 | false | X-RAY DIFFRACTION | true | 2 |
9irq | mmcif/ir/9irq.cif.gz | 295,579 | 5d7f29d5aae09a737e3d2e32ef38eeb8ba39803c | https://www.rcsb.org/structure/9IRQ | https://files.rcsb.org/download/9irq.cif.gz | HYDROLASE | 07/16/24 | 2024-07-16 | Alginate lyase (Microbulbifer sp. ALW1) | Microbulbifer sp. (strain ALW1) | Zhu, Y.B. | 1.98 | 1.98 | false | X-RAY DIFFRACTION | true | 7 |
9irs | mmcif/ir/9irs.cif.gz | 397,170 | 62c6f5bd6fd557df9bb30637bcbf583777dc09d2 | https://www.rcsb.org/structure/9IRS | https://files.rcsb.org/download/9irs.cif.gz | IMMUNE SYSTEM | 07/16/24 | 2024-07-16 | Cryo-EM structure of the TCR-OKT3 complex | Homo sapiens | Li, X., Zhu, Y., Huang, Z. | 3.18 | 3.18 | false | ELECTRON MICROSCOPY | true | 5 |
9iru | mmcif/ir/9iru.cif.gz | 320,298 | 222ee77f4019ccbfd1d35682444282c5e042f36e | https://www.rcsb.org/structure/9IRU | https://files.rcsb.org/download/9iru.cif.gz | IMMUNE SYSTEM | 07/16/24 | 2024-07-16 | Cryo-em structure of TCR-4B1 complex | Homo sapiens | Li, X., Zhu, Y., Huang, Z. | 3.14 | 3.14 | false | ELECTRON MICROSCOPY | true | 6 |
9irv | mmcif/ir/9irv.cif.gz | 115,436 | 192969a428f0b8f2e8f020711f21c6c00923054f | https://www.rcsb.org/structure/9IRV | https://files.rcsb.org/download/9irv.cif.gz | BIOSYNTHETIC PROTEIN | 07/16/24 | 2024-07-16 | MultiBody Refinement of dimeric DARPin and its bound GFP on a symmetric scaffold | Aequorea victoria; synthetic construct | Lu, X., Yan, M., Zhang, H.M., Hao, Q. | 3.47 | 3.47 | false | ELECTRON MICROSCOPY | true | 8 |
9irw | mmcif/ir/9irw.cif.gz | 98,417 | 1f89b318f4290acd08f3d603de33a1f66b8f5ae8 | https://www.rcsb.org/structure/9IRW | https://files.rcsb.org/download/9irw.cif.gz | TRANSPORT PROTEIN | 07/16/24 | 2024-07-16 | Structure of human URAT1 bound with urate | Homo sapiens | Guo, W.J., Wei, M., Chen, L. | 3.26 | 3.26 | false | ELECTRON MICROSCOPY | true | 7 |
9irx | mmcif/ir/9irx.cif.gz | 91,988 | bb7149e2ff6bb885860dc900aeafbfeb132a975b | https://www.rcsb.org/structure/9IRX | https://files.rcsb.org/download/9irx.cif.gz | TRANSPORT PROTEIN | 07/16/24 | 2024-07-16 | Structure of human URAT1 bound with benzbromarone | Homo sapiens | Guo, W.J., Wei, M., Chen, L. | 3.0 | 3 | false | ELECTRON MICROSCOPY | true | 8 |
9iry | mmcif/ir/9iry.cif.gz | 85,520 | 4c615ec3108992c427c4d59515fd99e82c926c63 | https://www.rcsb.org/structure/9IRY | https://files.rcsb.org/download/9iry.cif.gz | TRANSPORT PROTEIN | 07/16/24 | 2024-07-16 | Structure of human URAT1 bound with verinurad | Homo sapiens | Guo, W.J., Wei, M., Chen, L. | 3.2 | 3.2 | false | ELECTRON MICROSCOPY | true | 4 |
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