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F1 - ATP酶催化亚基中的协同三步运动与80度和40度的亚步旋转相关。

Cooperative three-step motions in catalytic subunits of F(1)-ATPase correlate with 80 degrees and 40 degrees substep rotations.

作者信息

Masaike Tomoko, Koyama-Horibe Fumie, Oiwa Kazuhiro, Yoshida Masasuke, Nishizaka Takayuki

机构信息

Department of Physics, Faculty of Science, Gakushuin University, 1-5-1 Mejiro, Toshima-ku, Tokyo 171-8588, Japan.

出版信息

Nat Struct Mol Biol. 2008 Dec;15(12):1326-33. doi: 10.1038/nsmb.1510. Epub 2008 Nov 16.

Abstract

Rotation of the central shaft gamma subunit in a molecular motor F(1)-ATPase is assumed to correlate with and probably be driven by domain motions of the three catalytic beta subunits. Here we observe directly these beta motions through an attached fluorophore, concomitantly with 80 degrees and 40 degrees substep rotations of gamma in the same single molecules. We show the sequence of conformations that each beta subunit undergoes in three-step bending, a approximately 40 degrees counterclockwise turn followed by two approximately 20 degrees clockwise turns, occurring in synchronization with two substep rotations of gamma. The results indicate that most previous crystal structures mimic the conformational set of three beta subunits in the catalytic dwells. Moreover, a previously undescribed set of beta conformations, open, closed and partially closed, is revealed in the ATP-waiting dwells. The present study thus bridges the gap between the chemical and mechanical steps in F(1)-ATPase.

摘要

分子马达F₁ - ATP酶中中心轴γ亚基的旋转被认为与三个催化β亚基的结构域运动相关,并且可能由其驱动。在这里,我们通过连接的荧光团直接观察到这些β运动,同时在同一单分子中γ亚基有80度和40度的亚步旋转。我们展示了每个β亚基在三步弯曲中经历的构象序列,即先逆时针旋转约40度,然后顺时针旋转两个约20度,这与γ亚基的两个亚步旋转同步发生。结果表明,大多数先前的晶体结构模拟了催化停留状态下三个β亚基的构象集。此外,在ATP等待停留状态下还揭示了一组先前未描述的β构象,即开放、关闭和部分关闭状态。因此,本研究填补了F₁ - ATP酶中化学步骤和机械步骤之间的空白。

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