5FCI
| Structure of the vacant uL3 W255C mutant 80S yeast ribosome | Descriptor: | 18S ribosomal RNA, 25S ribosomal RNA, 40S ribosomal protein S0-A, ... | Authors: | Mailliot, J, Garreau de Loubresse, N, Yusupova, G, Dinman, J.D, Yusupov, M. | Deposit date: | 2015-12-15 | Release date: | 2016-05-11 | Last modified: | 2024-01-31 | Method: | X-RAY DIFFRACTION (3.4 Å) | Cite: | Crystal Structures of the uL3 Mutant Ribosome: Illustration of the Importance of Ribosomal Proteins for Translation Efficiency. J.Mol.Biol., 428, 2016
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5FCJ
| Structure of the anisomycin-containing uL3 W255C mutant 80S yeast ribosome | Descriptor: | 18S ribosomal RNA, 25S ribosomal RNA, 40S ribosomal protein S0-A, ... | Authors: | Mailliot, J, Garreau de Loubresse, N, Yusupova, G, Dinman, J.D, Yusupov, M. | Deposit date: | 2015-12-15 | Release date: | 2016-05-11 | Last modified: | 2024-01-10 | Method: | X-RAY DIFFRACTION (3.1 Å) | Cite: | Crystal Structures of the uL3 Mutant Ribosome: Illustration of the Importance of Ribosomal Proteins for Translation Efficiency. J.Mol.Biol., 428, 2016
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5FDU
| Crystal structure of the Metalnikowin I antimicrobial peptide bound to the Thermus thermophilus 70S ribosome | Descriptor: | 16S ribosomal RNA, 23S ribosomal RNA, 30S ribosomal protein S10, ... | Authors: | Seefeldt, A.C, Graf, M, Perebaskine, N, Nguyen, F, Arenz, S, Mardirossian, M, Scocchi, M, Wilson, D.N, Innis, C.A. | Deposit date: | 2015-12-16 | Release date: | 2016-01-27 | Last modified: | 2024-04-24 | Method: | X-RAY DIFFRACTION (2.9 Å) | Cite: | Structure of the mammalian antimicrobial peptide Bac7(1-16) bound within the exit tunnel of a bacterial ribosome. Nucleic Acids Res., 44, 2016
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5FDV
| Crystal structure of the Pyrrhocoricin antimicrobial peptide bound to the Thermus thermophilus 70S ribosome | Descriptor: | 16S ribosomal RNA, 23S ribosomal RNA, 30S ribosomal protein S10, ... | Authors: | Seefeldt, A.C, Graf, M, Perebaskine, N, Nguyen, F, Arenz, S, Mardirossian, M, Scocchi, M, Wilson, D.N, Innis, C.A. | Deposit date: | 2015-12-16 | Release date: | 2016-01-27 | Last modified: | 2024-04-24 | Method: | X-RAY DIFFRACTION (2.8 Å) | Cite: | Structure of the mammalian antimicrobial peptide Bac7(1-16) bound within the exit tunnel of a bacterial ribosome. Nucleic Acids Res., 44, 2016
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5FKI
| Pseudorabies virus (PrV) nuclear egress complex proteins fitted as a hexameric lattice into a sub-tomogram average derived from focused- ion beam milled lamellae electron cryo-microscopic data | Descriptor: | CHLORIDE ION, UL31, UL34 protein, ... | Authors: | Hagen, C, Dent, K.C, Zeev Ben Mordehai, T, Vasishtan, D, Antonin, W, Mettenleiter, T.C, Gruenewald, K. | Deposit date: | 2015-10-16 | Release date: | 2016-03-16 | Last modified: | 2019-12-18 | Method: | ELECTRON MICROSCOPY (35 Å) | Cite: | Crystal Structure of the Herpesvirus Nuclear Egress Complex Provides Insights Into Inner Nuclear Membrane Remodelling Cell Rep., 13, 2015
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5FUU
| Ectodomain of cleaved wild type JR-FL EnvdCT trimer in complex with PGT151 Fab | Descriptor: | 2-acetamido-2-deoxy-beta-D-glucopyranose, 2-acetamido-2-deoxy-beta-D-glucopyranose-(1-4)-2-acetamido-2-deoxy-beta-D-glucopyranose, 2-acetamido-2-deoxy-beta-D-glucopyranose-(1-4)-[alpha-L-fucopyranose-(1-6)]2-acetamido-2-deoxy-beta-D-glucopyranose, ... | Authors: | Lee, J.H, Ward, A.B. | Deposit date: | 2016-01-29 | Release date: | 2016-03-09 | Last modified: | 2020-07-29 | Method: | ELECTRON MICROSCOPY (4.2 Å) | Cite: | Cryo-Em Structure of a Native, Fully Glycosylated and Cleaved HIV-1 Envelope Trimer Science, 351, 2016
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5GAK
| Yeast 60S ribosomal subunit with A-site tRNA, P-site tRNA and eIF-5A | Descriptor: | 25S rRNA, 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione, 5.8S rRNA, ... | Authors: | Schmidt, C, Becker, T. | Deposit date: | 2015-12-09 | Release date: | 2016-02-24 | Last modified: | 2019-12-11 | Method: | ELECTRON MICROSCOPY (3.88 Å) | Cite: | Structure of the hypusinylated eukaryotic translation factor eIF-5A bound to the ribosome. Nucleic Acids Res., 44, 2016
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5GJR
| An atomic structure of the human 26S proteasome | Descriptor: | 26S protease regulatory subunit 10B, 26S protease regulatory subunit 4, 26S protease regulatory subunit 6A, ... | Authors: | Huang, X.L, Luan, B, Wu, J.P, Shi, Y.G. | Deposit date: | 2016-07-01 | Release date: | 2016-09-07 | Last modified: | 2019-10-09 | Method: | ELECTRON MICROSCOPY (3.5 Å) | Cite: | An atomic structure of the human 26S proteasome. Nat. Struct. Mol. Biol., 23, 2016
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5GKY
| Structure of RyR1 in a closed state (C1 conformer) | Descriptor: | Peptidyl-prolyl cis-trans isomerase FKBP1A, Ryanodine receptor 1, ZINC ION | Authors: | Bai, X.C, Yan, Z, Wu, J.P, Yan, N. | Deposit date: | 2016-07-07 | Release date: | 2016-08-24 | Last modified: | 2024-03-27 | Method: | ELECTRON MICROSCOPY (3.8 Å) | Cite: | The Central domain of RyR1 is the transducer for long-range allosteric gating of channel opening Cell Res., 26, 2016
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5GKZ
| Structure of RyR1 in a closed state (C3 conformer) | Descriptor: | Peptidyl-prolyl cis-trans isomerase FKBP1A, Ryanodine receptor 1, ZINC ION | Authors: | Bai, X.C, Yan, Z, Wu, J.P, Yan, N. | Deposit date: | 2016-07-07 | Release date: | 2016-08-24 | Last modified: | 2024-03-27 | Method: | ELECTRON MICROSCOPY (4 Å) | Cite: | The Central domain of RyR1 is the transducer for long-range allosteric gating of channel opening Cell Res., 26, 2016
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5GL0
| Structure of RyR1 in a closed state (C4 conformer) | Descriptor: | Peptidyl-prolyl cis-trans isomerase FKBP1A, Ryanodine receptor 1, ZINC ION | Authors: | Bai, X.C, Yan, Z, Wu, J.P, Yan, N. | Deposit date: | 2016-07-07 | Release date: | 2016-08-24 | Last modified: | 2024-03-27 | Method: | ELECTRON MICROSCOPY (4.2 Å) | Cite: | The Central domain of RyR1 is the transducer for long-range allosteric gating of channel opening Cell Res., 26, 2016
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5GL1
| Structure of RyR1 in an open state | Descriptor: | Peptidyl-prolyl cis-trans isomerase FKBP1A, Ryanodine receptor 1, ZINC ION | Authors: | Bai, X.C, Yan, Z, Wu, J.P, Yan, N. | Deposit date: | 2016-07-07 | Release date: | 2016-08-24 | Last modified: | 2024-03-27 | Method: | ELECTRON MICROSCOPY (5.7 Å) | Cite: | The Central domain of RyR1 is the transducer for long-range allosteric gating of channel opening Cell Res., 26, 2016
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5GM6
| Cryo-EM structure of the activated spliceosome (Bact complex) at 3.5 angstrom resolution | Descriptor: | ADENOSINE-5'-DIPHOSPHATE, Cold sensitive U2 snRNA suppressor 1, GUANOSINE-5'-TRIPHOSPHATE, ... | Authors: | Yan, C, Wan, R, Bai, R, Huang, G, Shi, Y. | Deposit date: | 2016-07-12 | Release date: | 2016-09-21 | Last modified: | 2019-11-06 | Method: | ELECTRON MICROSCOPY (3.5 Å) | Cite: | Structure of a yeast activated spliceosome at 3.5 angstrom resolution Science, 353, 2016
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5GO9
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5GOA
| Cryo-EM structure of RyR2 in open state | Descriptor: | RyR2, ZINC ION | Authors: | Peng, W, Wu, J.P, Yan, N. | Deposit date: | 2016-07-26 | Release date: | 2016-10-05 | Last modified: | 2024-03-27 | Method: | ELECTRON MICROSCOPY (4.2 Å) | Cite: | Structural basis for the gating mechanism of the type 2 ryanodine receptor RyR2 Science, 354, 2016
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5GPN
| Architecture of mammalian respirasome | Descriptor: | Acyl carrier protein, COPPER (II) ION, Cytochrome b, ... | Authors: | Gu, J, Wu, M, Guo, R, Yang, M. | Deposit date: | 2016-08-03 | Release date: | 2017-04-05 | Last modified: | 2017-04-12 | Method: | ELECTRON MICROSCOPY (5.4 Å) | Cite: | The architecture of the mammalian respirasome. Nature, 537, 2016
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5GUP
| Cryo-EM structure of mammalian respiratory supercomplex I1III2IV1 | Descriptor: | (9R,11S)-9-({[(1S)-1-HYDROXYHEXADECYL]OXY}METHYL)-2,2-DIMETHYL-5,7,10-TRIOXA-2LAMBDA~5~-AZA-6LAMBDA~5~-PHOSPHAOCTACOSANE-6,6,11-TRIOL, 1,2-Dioleoyl-sn-glycero-3-phosphoethanolamine, Acyl carrier protein, ... | Authors: | Gu, J, Wu, M, Guo, R, Yang, M. | Deposit date: | 2016-08-30 | Release date: | 2017-03-29 | Last modified: | 2019-11-06 | Method: | ELECTRON MICROSCOPY (4 Å) | Cite: | Structure of Mammalian Respiratory Supercomplex I1III2IV1 Cell, 167, 2016
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5H4P
| Structural snapshot of cytoplasmic pre-60S ribosomal particles bound with Nmd3, Lsg1, Tif6 and Reh1 | Descriptor: | 25S ribosomal RNA, 5.8S ribosomal RNA, 5S ribosomal RNA, ... | Authors: | Ma, C, Wu, S, Li, N, Chen, Y, Yan, K, Li, Z, Zheng, L, Lei, J, Woolford, J.L, Gao, N. | Deposit date: | 2016-11-01 | Release date: | 2017-01-25 | Last modified: | 2024-03-20 | Method: | ELECTRON MICROSCOPY (3.07 Å) | Cite: | Structural snapshot of cytoplasmic pre-60S ribosomal particles bound by Nmd3, Lsg1, Tif6 and Reh1 Nat. Struct. Mol. Biol., 24, 2017
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5H5U
| Mechanistic insights into the alternative translation termination by ArfA and RF2 | Descriptor: | 16S rRNA, 23S rRNA, 30S ribosomal protein S10, ... | Authors: | Ma, C, Kurita, D, Li, N, Chen, Y, Himeno, H, Gao, N. | Deposit date: | 2016-11-09 | Release date: | 2017-01-25 | Last modified: | 2018-10-24 | Method: | ELECTRON MICROSCOPY (3 Å) | Cite: | Mechanistic insights into the alternative translation termination by ArfA and RF2 Nature, 541, 2017
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5HAU
| Crystal structure of antimicrobial peptide Bac7(1-19) bound to the Thermus thermophilus 70S ribosome | Descriptor: | 16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ... | Authors: | Gagnon, M.G, Roy, R.N, Lomakin, I.B, Florin, T, Mankin, A.S, Steitz, T.A. | Deposit date: | 2015-12-30 | Release date: | 2016-04-06 | Last modified: | 2024-03-06 | Method: | X-RAY DIFFRACTION (3 Å) | Cite: | Structures of proline-rich peptides bound to the ribosome reveal a common mechanism of protein synthesis inhibition. Nucleic Acids Res., 44, 2016
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5HCP
| Crystal structure of antimicrobial peptide Metalnikowin bound to the Thermus thermophilus 70S ribosome | Descriptor: | 16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ... | Authors: | Gagnon, M.G, Roy, R.N, Lomakin, I.B, Florin, T, Mankin, A.S, Steitz, T.A. | Deposit date: | 2016-01-04 | Release date: | 2016-04-06 | Last modified: | 2024-03-06 | Method: | X-RAY DIFFRACTION (2.894 Å) | Cite: | Structures of proline-rich peptides bound to the ribosome reveal a common mechanism of protein synthesis inhibition. Nucleic Acids Res., 44, 2016
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5HCQ
| Crystal structure of antimicrobial peptide Oncocin d15-19 bound to the Thermus thermophilus 70S ribosome | Descriptor: | 16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ... | Authors: | Gagnon, M.G, Roy, R.N, Lomakin, I.B, Florin, T, Mankin, A.S, Steitz, T.A. | Deposit date: | 2016-01-04 | Release date: | 2016-04-06 | Last modified: | 2024-03-06 | Method: | X-RAY DIFFRACTION (2.801 Å) | Cite: | Structures of proline-rich peptides bound to the ribosome reveal a common mechanism of protein synthesis inhibition. Nucleic Acids Res., 44, 2016
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5HCR
| Crystal structure of antimicrobial peptide Oncocin 10wt bound to the Thermus thermophilus 70S ribosome | Descriptor: | 16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ... | Authors: | Gagnon, M.G, Roy, R.N, Lomakin, I.B, Florin, T, Mankin, A.S, Steitz, T.A. | Deposit date: | 2016-01-04 | Release date: | 2016-04-06 | Last modified: | 2024-03-06 | Method: | X-RAY DIFFRACTION (2.8 Å) | Cite: | Structures of proline-rich peptides bound to the ribosome reveal a common mechanism of protein synthesis inhibition. Nucleic Acids Res., 44, 2016
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5HD1
| Crystal structure of antimicrobial peptide Pyrrhocoricin bound to the Thermus thermophilus 70S ribosome | Descriptor: | 16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ... | Authors: | Gagnon, M.G, Roy, R.N, Lomakin, I.B, Florin, T, Mankin, A.S, Steitz, T.A. | Deposit date: | 2016-01-04 | Release date: | 2016-04-06 | Last modified: | 2024-03-06 | Method: | X-RAY DIFFRACTION (2.7 Å) | Cite: | Structures of proline-rich peptides bound to the ribosome reveal a common mechanism of protein synthesis inhibition. Nucleic Acids Res., 44, 2016
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5I4L
| Crystal structure of Amicoumacin A bound to the yeast 80S ribosome | Descriptor: | 18S ribosomal RNA, 25S ribosomal RNA, 40S ribosomal protein S0-A, ... | Authors: | Prokhorova, I.V, Yusupova, G, Yusupov, M. | Deposit date: | 2016-02-12 | Release date: | 2016-06-22 | Last modified: | 2024-05-08 | Method: | X-RAY DIFFRACTION (3.1 Å) | Cite: | Amicoumacin A induces cancer cell death by targeting the eukaryotic ribosome. Sci Rep, 6, 2016
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