7K5E
| 1.75 A resolution structure of WT BfrB from Pseudomonas aeruginosa in complex with a protein-protein interaction inhibitor JAG-5-7 | 分子名称: | 4-{[(5-fluoro-2-hydroxyphenyl)methyl]amino}-1H-isoindole-1,3(2H)-dione, Ferroxidase, POTASSIUM ION, ... | 著者 | Lovell, S, Battaile, K.P, Soldano, A, Punchi-Hewage, A, Meraz, K, Annor-Gyamfi, J.K, Yao, H, Bunce, R.A, Rivera, M. | 登録日 | 2020-09-16 | 公開日 | 2020-12-16 | 最終更新日 | 2023-10-18 | 実験手法 | X-RAY DIFFRACTION (1.75 Å) | 主引用文献 | Small Molecule Inhibitors of the Bacterioferritin (BfrB)-Ferredoxin (Bfd) Complex Kill Biofilm-Embedded Pseudomonas aeruginosa Cells. Acs Infect Dis., 7, 2021
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7RWJ
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7RX2
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7RXB
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7RXA
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7RXH
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7RX3
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7RXG
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8UAF
| E. coli Sir2_HerA complex (12:6) bound with NAD+ | 分子名称: | ADENOSINE-5'-DIPHOSPHATE, MAGNESIUM ION, NICOTINAMIDE-ADENINE-DINUCLEOTIDE, ... | 著者 | Shen, Z.F, Lin, Q.P, Fu, T.M. | 登録日 | 2023-09-20 | 公開日 | 2023-12-27 | 最終更新日 | 2024-03-27 | 実験手法 | ELECTRON MICROSCOPY (3.18 Å) | 主引用文献 | Assembly-mediated activation of the SIR2-HerA supramolecular complex for anti-phage defense. Mol.Cell, 83, 2023
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8URW
| Cyanobacterial RNA polymerase elongation complex with NusG and CTP | 分子名称: | CYTIDINE-5'-TRIPHOSPHATE, DNA (40-MER), DNA-directed RNA polymerase subunit alpha, ... | 著者 | Qayyum, M.Z, Imashimizu, M, Leanca, M, Vishwakarma, R.K, Bradley Riaz, A, Yuzenkova, Y, Murakami, K.S. | 登録日 | 2023-10-26 | 公開日 | 2023-12-27 | 最終更新日 | 2024-02-21 | 実験手法 | ELECTRON MICROSCOPY (2.79 Å) | 主引用文献 | Structure and function of the Si3 insertion integrated into the trigger loop/helix of cyanobacterial RNA polymerase. Proc.Natl.Acad.Sci.USA, 121, 2024
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8EZ0
| Cryo-EM structure of 4 insulins bound full-length mouse IR mutant with physically decoupled alpha CTs (C684S/C685S/C687S; denoted as IR-3CS) Symmetric conformation | 分子名称: | Insulin, Insulin receptor | 著者 | Li, J, Wu, J.Y, Hall, C, Bai, X.C, Choi, E. | 登録日 | 2022-10-29 | 公開日 | 2022-11-09 | 最終更新日 | 2024-11-06 | 実験手法 | ELECTRON MICROSCOPY (3.7 Å) | 主引用文献 | Molecular basis for the role of disulfide-linked alpha CTs in the activation of insulin-like growth factor 1 receptor and insulin receptor. Elife, 11, 2022
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8EYX
| Cryo-EM structure of 4 insulins bound full-length mouse IR mutant with physically decoupled alpha CTs (C684S/C685S/C687S; denoted as IR-3CS) Asymmetric conformation 1 | 分子名称: | Insulin, Insulin receptor | 著者 | Li, J, Wu, J.Y, Hall, C, Bai, X.C, Choi, E. | 登録日 | 2022-10-29 | 公開日 | 2022-11-09 | 最終更新日 | 2024-10-23 | 実験手法 | ELECTRON MICROSCOPY (4.5 Å) | 主引用文献 | Molecular basis for the role of disulfide-linked alpha CTs in the activation of insulin-like growth factor 1 receptor and insulin receptor. Elife, 11, 2022
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7QID
| tentative model of the human insulin receptor ectodomain bound by three insulin | 分子名称: | Insulin, Insulin receptor, Isoform Short of Insulin receptor | 著者 | Gutman, T, Schaefer, I.B, Poojari, C.S, Vattulainen, I, Strauss, M, Coskun, U. | 登録日 | 2021-12-14 | 公開日 | 2022-02-02 | 最終更新日 | 2024-10-23 | 実験手法 | ELECTRON MICROSCOPY (5 Å) | 主引用文献 | Cryo-EM structure of the complete and ligand-saturated insulin receptor ectodomain J Cell Biol, 219, 2020
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8EST
| REACTION OF PORCINE PANCREATIC ELASTASE WITH 7-SUBSTITUTED 3-ALKOXY-4-CHLOROISOCOUMARINS: DESIGN OF POTENT INHIBITORS USING THE CRYSTAL STRUCTURE OF THE COMPLEX FORMED WITH 4-CHLORO-3-ETHOXY-7-GUANIDINO-ISOCOUMARIN | 分子名称: | CALCIUM ION, ETHYL-(2-CARBOXY-4-GUANIDINIUM-PHENYL)-CHLOROACETATE, PORCINE PANCREATIC ELASTASE, ... | 著者 | Radhakrishnan, R, Powers, J.C, Meyerjunior, E.F. | 登録日 | 1990-02-21 | 公開日 | 1992-10-15 | 最終更新日 | 2024-06-05 | 実験手法 | X-RAY DIFFRACTION (1.78 Å) | 主引用文献 | Reaction of porcine pancreatic elastase with 7-substituted 3-alkoxy-4-chloroisocoumarins: design of potent inhibitors using the crystal structure of the complex formed with 4-chloro-3-ethoxy-7-guanidinoisocoumarin. Biochemistry, 29, 1990
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8F6H
| Cryo-EM structure of a Zinc-loaded asymmetrical TMD D70A mutant of the YiiP-Fab complex | 分子名称: | Cadmium and zinc efflux pump FieF, Fab2r heavy chain, Fab2r light chain, ... | 著者 | Lopez-Redondo, M.L, Hussein, A.K, Stokes, D.L. | 登録日 | 2022-11-16 | 公開日 | 2023-02-08 | 最終更新日 | 2024-10-09 | 実験手法 | ELECTRON MICROSCOPY (3.9 Å) | 主引用文献 | Energy coupling and stoichiometry of Zn 2+ /H + antiport by the prokaryotic cation diffusion facilitator YiiP. Elife, 12, 2023
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8F6E
| Cryo-EM structure of a Zinc-loaded wild-type YiiP-Fab complex | 分子名称: | Cadmium and zinc efflux pump FieF, Fab heavy chain, Fab light chain, ... | 著者 | Lopez-Redondo, M.L, Hussein, A.K, Stokes, D.L. | 登録日 | 2022-11-16 | 公開日 | 2023-02-08 | 最終更新日 | 2024-10-23 | 実験手法 | ELECTRON MICROSCOPY (3.8 Å) | 主引用文献 | Energy coupling and stoichiometry of Zn 2+ /H + antiport by the prokaryotic cation diffusion facilitator YiiP. Elife, 12, 2023
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8F6K
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8F6J
| Cryo-EM structure of a Zinc-loaded D287A mutant of the YiiP-Fab complex | 分子名称: | Cadmium and zinc efflux pump FieF, Fab2r heavy chain, Fab2r light chain, ... | 著者 | Lopez-Redondo, M.L, Hussein, A.K, Stokes, D.L. | 登録日 | 2022-11-16 | 公開日 | 2023-02-08 | 最終更新日 | 2024-08-21 | 実験手法 | ELECTRON MICROSCOPY (3.7 Å) | 主引用文献 | Energy coupling and stoichiometry of Zn 2+ /H + antiport by the prokaryotic cation diffusion facilitator YiiP. Elife, 12, 2023
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8F6F
| Cryo-EM structure of a Zinc-loaded D51A mutant of the YiiP-Fab complex | 分子名称: | Cadmium and zinc efflux pump FieF, Fab2r heavy chain, Fab2r light chain, ... | 著者 | Lopez-Redondo, M.L, Hussein, A.K, Stokes, D.L. | 登録日 | 2022-11-16 | 公開日 | 2023-02-08 | 最終更新日 | 2024-08-21 | 実験手法 | ELECTRON MICROSCOPY (3.6 Å) | 主引用文献 | Energy coupling and stoichiometry of Zn 2+ /H + antiport by the prokaryotic cation diffusion facilitator YiiP. Elife, 12, 2023
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8F6I
| Cryo-EM structure of a Zinc-loaded symmetrical D70A mutant of the YiiP-Fab complex | 分子名称: | Cadmium and zinc efflux pump FieF, Fab2r heavy chain, Fab2r light chain, ... | 著者 | Lopez-Redondo, M.L, Hussein, A.K, Stokes, D.L. | 登録日 | 2022-11-16 | 公開日 | 2023-02-08 | 最終更新日 | 2024-10-23 | 実験手法 | ELECTRON MICROSCOPY (4.03 Å) | 主引用文献 | Energy coupling and stoichiometry of Zn 2+ /H + antiport by the prokaryotic cation diffusion facilitator YiiP. Elife, 12, 2023
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8FFQ
| Wildtype rabbit TRPV5 into nanodiscs in the presence of PI(4,5)P2 and ruthenium red | 分子名称: | 1-PALMITOYL-2-LINOLEOYL-SN-GLYCERO-3-PHOSPHOCHOLINE, ERGOSTEROL, Transient receptor potential cation channel subfamily V member 5, ... | 著者 | De Jesus-Perez, J.J, Fluck, E.C, Pumroy, R.A, Protopopova, A.D, Rocereta, J.A, Moiseenkova-Bell, V.Y. | 登録日 | 2022-12-09 | 公開日 | 2024-02-07 | 最終更新日 | 2024-02-21 | 実験手法 | ELECTRON MICROSCOPY (2.65 Å) | 主引用文献 | Molecular details of ruthenium red pore block in TRPV channels. Embo Rep., 25, 2024
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8FFN
| RR-bound wildtype rabbit TRPV5 in nanodiscs | 分子名称: | (2S)-3-(hexadecanoyloxy)-2-[(9Z)-octadec-9-enoyloxy]propyl 2-(trimethylammonio)ethyl phosphate, ERGOSTEROL, Transient receptor potential cation channel subfamily V member 5, ... | 著者 | Fluck, E.C, De Jesus-Perez, J.J, Pumroy, R.A, Protopopova, A.D, Rocereta, J.A, Moiseenkova-Bell, V.Y. | 登録日 | 2022-12-09 | 公開日 | 2024-02-07 | 最終更新日 | 2024-02-21 | 実験手法 | ELECTRON MICROSCOPY (2.96 Å) | 主引用文献 | Molecular details of ruthenium red pore block in TRPV channels. Embo Rep., 25, 2024
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8GI7
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8EYY
| Cryo-EM structure of 4 insulins bound full-length mouse IR mutant with physically decoupled alpha CTs (C684S/C685S/C687S, denoted as IR-3CS) Asymmetric conformation 2 | 分子名称: | Insulin, Insulin receptor | 著者 | Li, J, Wu, J.Y, Hall, C, Bai, X.C, Choi, E. | 登録日 | 2022-10-29 | 公開日 | 2022-11-09 | 最終更新日 | 2024-10-30 | 実験手法 | ELECTRON MICROSCOPY (4.9 Å) | 主引用文献 | Molecular basis for the role of disulfide-linked alpha CTs in the activation of insulin-like growth factor 1 receptor and insulin receptor. Elife, 11, 2022
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8WAS
| Structure of transcribing complex 9 (TC9), the initially transcribing complex with Pol II positioned 9nt downstream of TSS. | 分子名称: | Alpha-amanitin, CDK-activating kinase assembly factor MAT1, DNA-directed RNA polymerase II subunit E, ... | 著者 | Chen, X, Liu, W, Wang, Q, Wang, X, Ren, Y, Qu, X, Li, W, Xu, Y. | 登録日 | 2023-09-08 | 公開日 | 2023-12-06 | 最終更新日 | 2024-01-03 | 実験手法 | ELECTRON MICROSCOPY (6.13 Å) | 主引用文献 | Structural visualization of transcription initiation in action. Science, 382, 2023
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