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6S9A

Artificial GTPase-BSE dimer of human Dynamin1

6S9A の概要
エントリーDOI10.2210/pdb6s9a/pdb
分子名称Dynamin-1,Dynamin-1, ZINC ION, CHLORIDE ION, ... (4 entities in total)
機能のキーワードgtpase, artificial dimer, gtp hydrolysis, membrane fission, endocytosis
由来する生物種Homo sapiens (Human)
詳細
タンパク質・核酸の鎖数2
化学式量合計79512.69
構造登録者
Ganichkin, O.M.,Vancraenenbroeck, R.,Rosenblum, G.,Hofmann, H.,Daumke, O.,Noel, J.K. (登録日: 2019-07-11, 公開日: 2020-08-26, 最終更新日: 2024-01-24)
主引用文献Ganichkin, O.M.,Vancraenenbroeck, R.,Rosenblum, G.,Hofmann, H.,Mikhailov, A.S.,Daumke, O.,Noel, J.K.
Quantification and demonstration of the collective constriction-by-ratchet mechanism in the dynamin molecular motor.
Proc.Natl.Acad.Sci.USA, 118:-, 2021
Cited by
PubMed Abstract: Dynamin oligomerizes into helical filaments on tubular membrane templates and, through constriction, cleaves them in a GTPase-driven way. Structural observations of GTP-dependent cross-bridges between neighboring filament turns have led to the suggestion that dynamin operates as a molecular ratchet motor. However, the proof of such mechanism remains absent. Particularly, it is not known whether a powerful enough stroke is produced and how the motor modules would cooperate in the constriction process. Here, we characterized the dynamin motor modules by single-molecule Förster resonance energy transfer (smFRET) and found strong nucleotide-dependent conformational preferences. Integrating smFRET with molecular dynamics simulations allowed us to estimate the forces generated in a power stroke. Subsequently, the quantitative force data and the measured kinetics of the GTPase cycle were incorporated into a model including both a dynamin filament, with explicit motor cross-bridges, and a realistic deformable membrane template. In our simulations, collective constriction of the membrane by dynamin motor modules, based on the ratchet mechanism, is directly reproduced and analyzed. Functional parallels between the dynamin system and actomyosin in the muscle are seen. Through concerted action of the motors, tight membrane constriction to the hemifission radius can be reached. Our experimental and computational study provides an example of how collective motor action in megadalton molecular assemblies can be approached and explicitly resolved.
PubMed: 34244431
DOI: 10.1073/pnas.2101144118
主引用文献が同じPDBエントリー
実験手法
X-RAY DIFFRACTION (1.86 Å)
構造検証レポート
Validation report summary of 6s9a
検証レポート(詳細版)ダウンロードをダウンロード

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件を2026-04-15に公開中

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