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Structure and dynamics of rotary V-1 motor

机译:旋转V-1电机的结构和动力学

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摘要

Rotary ATPases are unique rotary molecular motors that function as energy conversion machines. Among all known rotary ATPases, F-1-ATPase is the best characterized rotary molecular motor. There are many high-resolution crystal structures and the rotation dynamics have been investigated in detail by extensive single-molecule studies. In contrast, knowledge on the structure and rotation dynamics of V-1-ATPase, another rotary ATPase, has been limited. However, recent high-resolution structural studies and single-molecule studies on V-1-ATPase have provided new insights on how the catalytic sites in this molecular motor change its conformation during rotation driven by ATP hydrolysis. In this review, we summarize recent information on the structural features and rotary dynamics of V-1-ATPase revealed from structural and single-molecule approaches and discuss the possible chemomechanical coupling scheme of V-1-ATPase with a focus on differences between rotary molecular motors.
机译:旋转ATP酶是一种独特的旋转分子马达,起着能量转换机器的作用。在所有已知的旋转ATP酶中,F-1-ATP酶是最具特征的旋转分子马达。有许多高分辨率的晶体结构和旋转动力学已经被广泛的单分子研究详细研究。相比之下,关于另一种旋转型ATP酶V-1-ATP酶的结构和旋转动力学的知识有限。然而,最近对V-1-ATP酶的高分辨率结构研究和单分子研究为这种分子马达中的催化位点在ATP水解驱动的旋转过程中如何改变其构象提供了新的见解。在这篇综述中,我们总结了从结构和单分子方法揭示的V-1-ATP酶的结构特征和旋转动力学的最新信息,并讨论了V-1-ATP酶可能的化学机械耦合方案,重点讨论了旋转分子马达之间的差异。

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