4N85
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4N86
| Crystal structure of human transthyretin complexed with glabridin | Descriptor: | 4-[(3R)-8,8-dimethyl-3,4-dihydro-2H,8H-pyrano[2,3-f]chromen-3-yl]benzene-1,3-diol, CALCIUM ION, Transthyretin | Authors: | Yokoyama, T, Kosaka, Y, Mizuguchi, M. | Deposit date: | 2013-10-17 | Release date: | 2014-02-19 | Last modified: | 2024-03-20 | Method: | X-RAY DIFFRACTION (2.001 Å) | Cite: | Crystal structures of human transthyretin complexed with glabridin J.Med.Chem., 57, 2014
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8W42
| X-ray crystal structure of V30M-TTR in complex with resveratrol | Descriptor: | RESVERATROL, SODIUM ION, Transthyretin | Authors: | Yokoyama, T. | Deposit date: | 2023-08-23 | Release date: | 2023-11-22 | Last modified: | 2023-12-06 | Method: | X-RAY DIFFRACTION (1.45 Å) | Cite: | Resveratrol Derivatives Inhibit Transthyretin Fibrillization: Structural Insights into the Interactions between Resveratrol Derivatives and Transthyretin. J.Med.Chem., 66, 2023
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8W44
| X-ray crystal structure of V30M-TTR in complex with oxyresveratrol | Descriptor: | SODIUM ION, Transthyretin, trans-oxyresveratrol | Authors: | Yokoyama, T. | Deposit date: | 2023-08-23 | Release date: | 2023-11-22 | Last modified: | 2023-12-06 | Method: | X-RAY DIFFRACTION (1.399 Å) | Cite: | Resveratrol Derivatives Inhibit Transthyretin Fibrillization: Structural Insights into the Interactions between Resveratrol Derivatives and Transthyretin. J.Med.Chem., 66, 2023
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8W46
| X-ray crystal structure of V30M-TTR in complex with pterostilbene | Descriptor: | Pterostilbene, SODIUM ION, Transthyretin | Authors: | Yokoyama, T. | Deposit date: | 2023-08-23 | Release date: | 2023-11-22 | Last modified: | 2023-12-06 | Method: | X-RAY DIFFRACTION (1.35 Å) | Cite: | Resveratrol Derivatives Inhibit Transthyretin Fibrillization: Structural Insights into the Interactions between Resveratrol Derivatives and Transthyretin. J.Med.Chem., 66, 2023
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8W48
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8W43
| X-ray crystal structure of V30M-TTR in complex with piceatannol | Descriptor: | PICEATANNOL, SODIUM ION, Transthyretin | Authors: | Yokoyama, T. | Deposit date: | 2023-08-23 | Release date: | 2023-11-22 | Last modified: | 2023-12-06 | Method: | X-RAY DIFFRACTION (1.302 Å) | Cite: | Resveratrol Derivatives Inhibit Transthyretin Fibrillization: Structural Insights into the Interactions between Resveratrol Derivatives and Transthyretin. J.Med.Chem., 66, 2023
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8W45
| X-ray crystal structure of V30M-TTR in complex with pinostilbene | Descriptor: | 3-[(E)-2-(4-hydroxyphenyl)ethenyl]-5-methoxy-phenol, SODIUM ION, Transthyretin | Authors: | Yokoyama, T. | Deposit date: | 2023-08-23 | Release date: | 2023-11-22 | Last modified: | 2023-12-06 | Method: | X-RAY DIFFRACTION (1.1 Å) | Cite: | Resveratrol Derivatives Inhibit Transthyretin Fibrillization: Structural Insights into the Interactions between Resveratrol Derivatives and Transthyretin. J.Med.Chem., 66, 2023
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8W47
| X-ray crystal structure of V30M-TTR in complex with isorhapontigenin | Descriptor: | 5-[(~{E})-2-(3-methoxy-4-oxidanyl-phenyl)ethenyl]benzene-1,3-diol, SODIUM ION, Transthyretin | Authors: | Yokoyama, T. | Deposit date: | 2023-08-23 | Release date: | 2023-11-22 | Last modified: | 2023-12-06 | Method: | X-RAY DIFFRACTION (1.4 Å) | Cite: | Resveratrol Derivatives Inhibit Transthyretin Fibrillization: Structural Insights into the Interactions between Resveratrol Derivatives and Transthyretin. J.Med.Chem., 66, 2023
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3J0E
| Models for the T. thermophilus ribosome recycling factor and the E. coli elongation factor G bound to the E. coli post-termination complex | Descriptor: | 30S ribosomal protein S12, Elongation factor G, Ribosome-recycling factor, ... | Authors: | Yokoyama, T, Shaikh, T.R, Iwakura, N, Kaji, H, Kaji, A, Agrawal, R.K. | Deposit date: | 2011-06-29 | Release date: | 2012-04-25 | Last modified: | 2024-02-21 | Method: | ELECTRON MICROSCOPY (9.9 Å) | Cite: | Structural insights into initial and intermediate steps of the ribosome-recycling process. Embo J., 31, 2012
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5AYT
| Crystal structure of transthyretin in complex with L6 | Descriptor: | 2-oxidanyl-6-(phenylcarbonyl)benzo[de]isoquinoline-1,3-dione, Transthyretin | Authors: | Yokoyama, T, Mizuguchi, M, Kai, H. | Deposit date: | 2015-09-03 | Release date: | 2016-01-20 | Last modified: | 2024-03-20 | Method: | X-RAY DIFFRACTION (1.4 Å) | Cite: | Structural stabilization of transthyretin by a new compound, 6-benzoyl-2-hydroxy-1H-benzo[de]isoquinoline-1,3(2H)-dione J. Pharmacol. Sci., 129, 2015
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5H0W
| Crystal structure of H88F mutated human transthyretin | Descriptor: | SULFATE ION, Transthyretin | Authors: | Yokoyama, T, Hanawa, Y, Obita, T, Mizuguchi, M. | Deposit date: | 2016-10-07 | Release date: | 2017-06-14 | Last modified: | 2024-03-20 | Method: | X-RAY DIFFRACTION (1.904 Å) | Cite: | Stability and crystal structures of His88 mutant human transthyretins FEBS Lett., 591, 2017
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5H0Y
| Crystal structure of H88Y mutated human transthyretin | Descriptor: | CHLORIDE ION, SULFATE ION, Transthyretin | Authors: | Yokoyama, T, Hanawa, Y, Obita, T, Mizuguchi, M. | Deposit date: | 2016-10-07 | Release date: | 2017-06-14 | Last modified: | 2024-03-20 | Method: | X-RAY DIFFRACTION (1.8 Å) | Cite: | Stability and crystal structures of His88 mutant human transthyretins FEBS Lett., 591, 2017
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5H0Z
| Crystal structure of P113A mutated human transthyretin | Descriptor: | CHLORIDE ION, SULFATE ION, Transthyretin | Authors: | Yokoyama, T, Hanawa, Y, Obita, T, Mizuguchi, M. | Deposit date: | 2016-10-07 | Release date: | 2017-06-14 | Last modified: | 2024-03-20 | Method: | X-RAY DIFFRACTION (1.735 Å) | Cite: | Stability and crystal structures of His88 mutant human transthyretins FEBS Lett., 591, 2017
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5H0X
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5H0V
| Crystal structure of H88A mutated human transthyretin | Descriptor: | (4S)-2-METHYL-2,4-PENTANEDIOL, MAGNESIUM ION, Transthyretin | Authors: | Yokoyama, T, Hanawa, Y, Obita, T, Mizuguchi, M. | Deposit date: | 2016-10-07 | Release date: | 2017-06-14 | Last modified: | 2024-03-20 | Method: | X-RAY DIFFRACTION (1.58 Å) | Cite: | Stability and crystal structures of His88 mutant human transthyretins FEBS Lett., 591, 2017
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4N87
| Crystal structure of V30M mutant human transthyretin complexed with glabridin | Descriptor: | 4-[(3R)-8,8-dimethyl-3,4-dihydro-2H,8H-pyrano[2,3-f]chromen-3-yl]benzene-1,3-diol, Transthyretin | Authors: | Yokoyama, T, Kosaka, Y, Mizuguchi, M. | Deposit date: | 2013-10-17 | Release date: | 2014-02-19 | Last modified: | 2024-03-20 | Method: | X-RAY DIFFRACTION (1.794 Å) | Cite: | Crystal structures of human transthyretin complexed with glabridin J.Med.Chem., 57, 2014
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3J0D
| Models for the T. thermophilus ribosome recycling factor bound to the E. coli post-termination complex | Descriptor: | 30S ribosomal protein S12, 50S ribosomal protein L11, Ribosome-recycling factor, ... | Authors: | Yokoyama, T, Shaikh, T.R, Iwakura, N, Kaji, H, Kaji, A, Agrawal, R.K. | Deposit date: | 2011-06-29 | Release date: | 2012-04-25 | Last modified: | 2024-02-21 | Method: | ELECTRON MICROSCOPY (11.1 Å) | Cite: | Structural insights into initial and intermediate steps of the ribosome-recycling process. Embo J., 31, 2012
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4PWI
| Crystal structure of V30M mutant human transthyretin complexed with rosmarinic acid | Descriptor: | (2R)-3-(3,4-dihydroxyphenyl)-2-{[(2E)-3-(3,4-dihydroxyphenyl)prop-2-enoyl]oxy}propanoic acid, Transthyretin | Authors: | Yokoyama, T, Kosaka, Y, Mizuguchi, M. | Deposit date: | 2014-03-20 | Release date: | 2014-11-26 | Last modified: | 2023-11-08 | Method: | X-RAY DIFFRACTION (1.494 Å) | Cite: | Inhibitory Activities of Propolis and Its Promising Component, Caffeic Acid Phenethyl Ester, against Amyloidogenesis of Human Transthyretin J.Med.Chem., 57, 2014
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4PWE
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4PWJ
| Crystal structure of V30M mutant human transthyretin complexed with nordihydroguaiaretic acid | Descriptor: | 4-[(2R,3S)-3-[(3,4-DIHYDROXYPHENYL)METHYL]-2-METHYLBUTYL]BENZENE-1,2-DIOL, Transthyretin | Authors: | Yokoyama, T, Kosaka, Y, Mizuguchi, M. | Deposit date: | 2014-03-20 | Release date: | 2014-11-26 | Last modified: | 2023-11-08 | Method: | X-RAY DIFFRACTION (1.55 Å) | Cite: | Inhibitory Activities of Propolis and Its Promising Component, Caffeic Acid Phenethyl Ester, against Amyloidogenesis of Human Transthyretin J.Med.Chem., 57, 2014
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4PWG
| Crystal structure of V30M mutant human transthyretin complexed with caffeic acid ethyl ester | Descriptor: | CALCIUM ION, Transthyretin, ethyl (2E)-3-(3,4-dihydroxyphenyl)prop-2-enoate | Authors: | Yokoyama, T, Kosaka, Y, Mizuguchi, M. | Deposit date: | 2014-03-20 | Release date: | 2014-11-26 | Last modified: | 2023-11-08 | Method: | X-RAY DIFFRACTION (1.798 Å) | Cite: | Inhibitory Activities of Propolis and Its Promising Component, Caffeic Acid Phenethyl Ester, against Amyloidogenesis of Human Transthyretin J.Med.Chem., 57, 2014
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4PWK
| Crystal structure of V30M mutant human transthyretin complexed with dihydroguaiaretic acid | Descriptor: | 4,4'-[(2R,3R)-2,3-dimethylbutane-1,4-diyl]bis(2-methoxyphenol), Transthyretin | Authors: | Yokoyama, T, Kosaka, Y, Mizuguchi, M. | Deposit date: | 2014-03-20 | Release date: | 2014-11-26 | Last modified: | 2023-11-08 | Method: | X-RAY DIFFRACTION (1.59 Å) | Cite: | Inhibitory Activities of Propolis and Its Promising Component, Caffeic Acid Phenethyl Ester, against Amyloidogenesis of Human Transthyretin J.Med.Chem., 57, 2014
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6IP8
| Cryo-EM structure of the HCV IRES dependently initiated CMV-stalled 80S ribosome (Structure iv) | Descriptor: | 18S ribosomal RNA, 28S ribosomal RNA, 40S ribosomal protein S10, ... | Authors: | Yokoyama, T, Shigematsu, H, Shirouzu, M, Imataka, H, Ito, T. | Deposit date: | 2018-11-02 | Release date: | 2019-05-29 | Last modified: | 2019-11-06 | Method: | ELECTRON MICROSCOPY (3.9 Å) | Cite: | HCV IRES Captures an Actively Translating 80S Ribosome. Mol.Cell, 74, 2019
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6IP5
| Cryo-EM structure of the CMV-stalled human 80S ribosome (Structure ii) | Descriptor: | 18S ribosomal RNA, 28S ribosomal RNA, 40S ribosomal protein S10, ... | Authors: | Yokoyama, T, Shigematsu, H, Shirouzu, M, Imataka, H, Ito, T. | Deposit date: | 2018-11-02 | Release date: | 2019-05-29 | Last modified: | 2019-11-06 | Method: | ELECTRON MICROSCOPY (3.9 Å) | Cite: | HCV IRES Captures an Actively Translating 80S Ribosome. Mol.Cell, 74, 2019
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