7A85
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7A8E
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7A8K
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7A80
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7A7U
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7A82
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7A87
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7A8B
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7A8H
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7A8D
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7A7R
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7A7X
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7A8A
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7A8M
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7A7M
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7A7V
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7A89
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7A7Q
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7A7Y
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7A8I
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7AFZ
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![BU of 7afz by Molmil](/molmil-images/mine/7afz) | L1 metallo-b-lactamase with compound EBL-1306 | 分子名称: | 3-[3-chloranyl-4-(methylsulfonylmethyl)phenyl]-7-propan-2-yl-1~{H}-indole-2-carboxylic acid, Metallo-beta-lactamase L1, SULFATE ION, ... | 著者 | Hinchliffe, P, Spencer, J, Brem, J. | 登録日 | 2020-09-21 | 公開日 | 2021-10-06 | 最終更新日 | 2024-01-31 | 実験手法 | X-RAY DIFFRACTION (1.5 Å) | 主引用文献 | Imitation of beta-lactam binding enables broad-spectrum metallo-beta-lactamase inhibitors. Nat.Chem., 14, 2022
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8DHY
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![BU of 8dhy by Molmil](/molmil-images/mine/8dhy) | N-terminal fragment of MsbA fused to GFP in complex with copper(II) | 分子名称: | COPPER (II) ION, Fusion protein of MsbA N-terminal fragment and GFP,Green fluorescent protein | 著者 | Schrecke, S.R, Zhang, T, Lyu, J, Laganowsky, A. | 登録日 | 2022-06-28 | 公開日 | 2022-12-07 | 最終更新日 | 2023-11-15 | 実験手法 | X-RAY DIFFRACTION (2.15 Å) | 主引用文献 | Structural basis for lipid and copper regulation of the ABC transporter MsbA. Nat Commun, 13, 2022
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6UX5
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7T1J
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![BU of 7t1j by Molmil](/molmil-images/mine/7t1j) | Crystal structure of RUBISCO from Rhodospirillaceae bacterium BRH_c57 | 分子名称: | 2-CARBOXYARABINITOL-1,5-DIPHOSPHATE, MAGNESIUM ION, Ribulose bisphosphate carboxylase | 著者 | Pereira, J.H, Liu, A.K, Shih, P.M, Adams, P.D. | 登録日 | 2021-12-02 | 公開日 | 2022-09-07 | 最終更新日 | 2023-11-15 | 実験手法 | X-RAY DIFFRACTION (1.96 Å) | 主引用文献 | Structural plasticity enables evolution and innovation of RuBisCO assemblies. Sci Adv, 8, 2022
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7PZO
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![BU of 7pzo by Molmil](/molmil-images/mine/7pzo) | mite allergen Der p 3 from Dermatophagoides pteronyssinus | 分子名称: | SULFATE ION, mite allergen Der p 3 | 著者 | Timofeev, V.I, Shevtsov, M.B, Abramchik, Y.A, Mikheeva, O.O, Kostromina, M.A, Lykoshin, D.D, Zayats, E.A, Zavriev, S.K, Esipov, R.S, Kuranova, I.P. | 登録日 | 2021-10-13 | 公開日 | 2022-11-02 | 最終更新日 | 2024-01-31 | 実験手法 | X-RAY DIFFRACTION (2.25 Å) | 主引用文献 | Structural plasticity and thermal stability of the histone-like protein from Spiroplasma melliferum are due to phenylalanine insertions into the conservative scaffold. J.Biomol.Struct.Dyn., 36, 2018
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