3ZYS
| Human dynamin 1 deltaPRD polymer stabilized with GMPPCP | 分子名称: | DYNAMIN-1, INTERFERON-INDUCED GTP-BINDING PROTEIN MX1 | 著者 | Chappie, J.S, Mears, J.A, Fang, S, Leonard, M, Schmid, S.L, Milligan, R.A, Hinshaw, J.E, Dyda, F. | 登録日 | 2011-08-24 | 公開日 | 2011-10-12 | 最終更新日 | 2019-10-23 | 実験手法 | ELECTRON MICROSCOPY (12.2 Å) | 主引用文献 | A Pseudoatomic Model of the Dynamin Polymer Identifies a Hydrolysis-Dependent Powerstroke. Cell(Cambridge,Mass.), 147, 2011
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3ZYC
| DYNAMIN 1 GTPASE GED FUSION DIMER COMPLEXED WITH GMPPCP | 分子名称: | DYNAMIN-1, MAGNESIUM ION, PHOSPHOMETHYLPHOSPHONIC ACID GUANYLATE ESTER | 著者 | Chappie, J.S, Mears, J.A, Fang, S, Leonard, M, Schmid, S.L, Milligan, R.A, Hinshaw, J.E, Dyda, F. | 登録日 | 2011-08-22 | 公開日 | 2011-10-12 | 最終更新日 | 2023-12-20 | 実験手法 | X-RAY DIFFRACTION (2.2 Å) | 主引用文献 | A Pseudoatomic Model of the Dynamin Polymer Identifies a Hydrolysis-Dependent Powerstroke. Cell(Cambridge,Mass.), 147, 2011
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2X2E
| Dynamin GTPase dimer, long axis form | 分子名称: | DYNAMIN-1, GUANOSINE-5'-DIPHOSPHATE, MAGNESIUM ION, ... | 著者 | Chappie, J.S, Acharya, S, Leonard, M, Schmid, S.L, Dyda, F. | 登録日 | 2010-01-12 | 公開日 | 2010-04-28 | 最終更新日 | 2019-05-08 | 実験手法 | X-RAY DIFFRACTION (2 Å) | 主引用文献 | G Domain Dimerization Controls Dynamin'S Assembly-Stimulated Gtpase Activity. Nature, 465, 2010
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2X2F
| Dynamin 1 GTPase dimer, short axis form | 分子名称: | DYNAMIN-1, GUANOSINE-5'-DIPHOSPHATE, MAGNESIUM ION, ... | 著者 | Chappie, J.S, Acharya, S, Leonard, M, Schmid, S.L, Dyda, F. | 登録日 | 2010-01-13 | 公開日 | 2010-04-28 | 最終更新日 | 2023-12-20 | 実験手法 | X-RAY DIFFRACTION (2 Å) | 主引用文献 | G Domain Dimerization Controls Dynamin'S Assembly-Stimulated Gtpase Activity. Nature, 465, 2010
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6P74
| OLD nuclease from Thermus Scotoductus | 分子名称: | 4-(2-HYDROXYETHYL)-1-PIPERAZINE ETHANESULFONIC ACID, PLATINUM (II) ION, Putative ATP-dependent endonuclease of the OLD family, ... | 著者 | Chappie, J.S, Schiltz, C.J. | 登録日 | 2019-06-04 | 公開日 | 2020-01-29 | 最終更新日 | 2024-03-13 | 実験手法 | X-RAY DIFFRACTION (2.2 Å) | 主引用文献 | The full-length structure of Thermus scotoductus OLD defines the ATP hydrolysis properties and catalytic mechanism of Class 1 OLD family nucleases. Nucleic Acids Res., 48, 2020
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4UUD
| Human dynamin 1 K44A superconstricted polymer stabilized with GTP | 分子名称: | DYNAMIN-1 | 著者 | Sundborger, A.C, Fang, S, Heymann, J.A, Ray, P, Chappie, J.S, Hinshaw, J.E. | 登録日 | 2014-07-25 | 公開日 | 2014-08-27 | 最終更新日 | 2017-08-30 | 実験手法 | ELECTRON MICROSCOPY (12.5 Å) | 主引用文献 | A Dynamin Mutant Defines a Superconstricted Prefission State. Cell Rep., 8, 2014
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8TWQ
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4UUK
| Human dynamin 1 K44A superconstricted polymer stabilized with GTP strand 2 | 分子名称: | DYNAMIN-1 | 著者 | Sundborger, A.C, Fang, S, Heymann, J.A, Ray, P, Chappie, J.S, Hinshaw, J.E. | 登録日 | 2014-07-29 | 公開日 | 2014-08-27 | 最終更新日 | 2017-08-30 | 実験手法 | ELECTRON MICROSCOPY (12.5 Å) | 主引用文献 | A Dynamin Mutant Defines a Superconstricted Prefission State. Cell Rep., 8, 2014
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6DJQ
| Vps1 GTPase-BSE fusion complexed with GDP.AlF4- | 分子名称: | GUANOSINE-5'-DIPHOSPHATE, MAGNESIUM ION, SODIUM ION, ... | 著者 | Varlakhanova, N.V, Brady, T.M, Tornabene, B.A, Hosford, C.J, Chappie, J.S, Ford, M.G.J. | 登録日 | 2018-05-25 | 公開日 | 2018-08-22 | 最終更新日 | 2023-10-11 | 実験手法 | X-RAY DIFFRACTION (3.1 Å) | 主引用文献 | Structures of the fungal dynamin-related protein Vps1 reveal a unique, open helical architecture. J. Cell Biol., 217, 2018
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7RLM
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7ULN
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7ULO
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6N0S
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6C5D
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6DEF
| Vps1 GTPase-BSE fusion complexed with GMPPCP | 分子名称: | MAGNESIUM ION, PHOSPHOMETHYLPHOSPHONIC ACID GUANYLATE ESTER, Vps1 GTPase-BSE | 著者 | Ford, M.G.J, Varlakhanova, N.V, Brady, T.M, Chappie, J.S, Hosford, C.J. | 登録日 | 2018-05-11 | 公開日 | 2018-08-22 | 最終更新日 | 2023-10-11 | 実験手法 | X-RAY DIFFRACTION (2.26 Å) | 主引用文献 | Structures of the fungal dynamin-related protein Vps1 reveal a unique, open helical architecture. J. Cell Biol., 217, 2018
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6UT4
| Cryo-EM structure of the asymmetric AAA+ domain hexamer from Thermococcus gammatolerans McrB | 分子名称: | 5'-GUANOSINE-DIPHOSPHATE-MONOTHIOPHOSPHATE, GTPase subunit of restriction endonuclease, MAGNESIUM ION | 著者 | Niu, Y, Suzuki, H, Hosford, C.J, Chappie, J.S, Walz, T. | 登録日 | 2019-10-29 | 公開日 | 2020-10-21 | 最終更新日 | 2024-03-06 | 実験手法 | ELECTRON MICROSCOPY (3.1 Å) | 主引用文献 | Structural asymmetry governs the assembly and GTPase activity of McrBC restriction complexes. Nat Commun, 11, 2020
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6UT7
| Fitted model for the tetradecameric assembly of Thermococcus gammatolerans McrB AAA+ hexamers with bound McrC | 分子名称: | 5'-GUANOSINE-DIPHOSPHATE-MONOTHIOPHOSPHATE, GTPase subunit of restriction endonuclease, GUANOSINE-5'-DIPHOSPHATE, ... | 著者 | Niu, Y, Suzuki, H, Hosford, C.J, Chappie, J.S, Walz, T. | 登録日 | 2019-10-29 | 公開日 | 2020-10-21 | 最終更新日 | 2024-03-06 | 実験手法 | ELECTRON MICROSCOPY (4.26 Å) | 主引用文献 | Structural asymmetry governs the assembly and GTPase activity of McrBC restriction complexes. Nat Commun, 11, 2020
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6UT5
| Cryo-EM structure of the Thermococcus gammatolerans McrBC complex | 分子名称: | 5'-GUANOSINE-DIPHOSPHATE-MONOTHIOPHOSPHATE, GTPase subunit of restriction endonuclease, GUANOSINE-5'-DIPHOSPHATE, ... | 著者 | Niu, Y, Suzuki, H, Hosford, C.J, Chappie, J.S, Walz, T. | 登録日 | 2019-10-29 | 公開日 | 2020-10-21 | 最終更新日 | 2024-03-06 | 実験手法 | ELECTRON MICROSCOPY (2.44 Å) | 主引用文献 | Structural asymmetry governs the assembly and GTPase activity of McrBC restriction complexes. Nat Commun, 11, 2020
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6UT8
| Refined half-complex from tetradecameric assembly of Thermococcus gammatolerans McrB AAA+ hexamers with bound McrC | 分子名称: | 5'-GUANOSINE-DIPHOSPHATE-MONOTHIOPHOSPHATE, GTPase subunit of restriction endonuclease, GUANOSINE-5'-DIPHOSPHATE, ... | 著者 | Niu, Y, Suzuki, H, Hosford, C.J, Chappie, J.S, Walz, T. | 登録日 | 2019-10-29 | 公開日 | 2020-10-21 | 最終更新日 | 2024-03-06 | 実験手法 | ELECTRON MICROSCOPY (3.68 Å) | 主引用文献 | Structural asymmetry governs the assembly and GTPase activity of McrBC restriction complexes. Nat Commun, 11, 2020
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6VJF
| The P-Loop K to A mutation of C. therm Vps1 GTPase-BSE | 分子名称: | MAGNESIUM ION, PHOSPHOMETHYLPHOSPHONIC ACID GUANYLATE ESTER, Putative sorting protein Vps1 | 著者 | Tornabene, B.A, Varlakhanova, N.V, Chappie, J.S, Ford, M.G.J. | 登録日 | 2020-01-15 | 公開日 | 2020-02-19 | 最終更新日 | 2023-10-11 | 実験手法 | X-RAY DIFFRACTION (2.472 Å) | 主引用文献 | Structural and functional characterization of the dominant negative P-loop lysine mutation in the dynamin superfamily protein Vps1. Protein Sci., 29, 2020
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6UT6
| Cryo-EM structure of the Escherichia coli McrBC complex | 分子名称: | 5'-GUANOSINE-DIPHOSPHATE-MONOTHIOPHOSPHATE, 5-methylcytosine-specific restriction enzyme B, GUANOSINE-5'-DIPHOSPHATE, ... | 著者 | Niu, Y, Suzuki, H, Hosford, C.J, Chappie, J.S, Walz, T. | 登録日 | 2019-10-29 | 公開日 | 2020-10-21 | 最終更新日 | 2024-03-06 | 実験手法 | ELECTRON MICROSCOPY (3.28 Å) | 主引用文献 | Structural asymmetry governs the assembly and GTPase activity of McrBC restriction complexes. Nat Commun, 11, 2020
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6UT3
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6NJX
| C-terminal region of the Xanthomonas campestris pv. campestris OLD protein phased with mercury | 分子名称: | IODIDE ION, MERCURY (II) ION, Xcc_ctr_Hg | 著者 | Schiltz, C.J, Lee, A, Partlow, E.A, Hosford, C.J, Chappie, J.S. | 登録日 | 2019-01-04 | 公開日 | 2019-08-07 | 最終更新日 | 2024-03-13 | 実験手法 | X-RAY DIFFRACTION (1.95 Å) | 主引用文献 | Structural characterization of Class 2 OLD family nucleases supports a two-metal catalysis mechanism for cleavage. Nucleic Acids Res., 47, 2019
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6NK8
| C-terminal region of the Burkholderia pseudomallei OLD protein | 分子名称: | Class 2 OLD family nuclease, MAGNESIUM ION | 著者 | Schiltz, C.J, Lee, A, Partlow, E.A, Hosford, C.J, Chappie, J.S. | 登録日 | 2019-01-05 | 公開日 | 2019-08-07 | 最終更新日 | 2024-03-13 | 実験手法 | X-RAY DIFFRACTION (2.24 Å) | 主引用文献 | Structural characterization of Class 2 OLD family nucleases supports a two-metal catalysis mechanism for cleavage. Nucleic Acids Res., 47, 2019
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6NJW
| C-terminal region of the Xanthomonas campestris pv. campestris OLD protein phased with platinum | 分子名称: | IODIDE ION, MAGNESIUM ION, PLATINUM (II) ION, ... | 著者 | Schiltz, C.J, Lee, A, Partlow, E.A, Hosford, C.J, Chappie, J.S. | 登録日 | 2019-01-04 | 公開日 | 2019-08-07 | 最終更新日 | 2024-03-13 | 実験手法 | X-RAY DIFFRACTION (1.86 Å) | 主引用文献 | Structural characterization of Class 2 OLD family nucleases supports a two-metal catalysis mechanism for cleavage. Nucleic Acids Res., 47, 2019
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