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F(1)-ATP酶分子马达的随机化学力学

The stochastic chemomechanics of the F(1)-ATPase molecular motor.

作者信息

Gaspard P, Gerritsma E

机构信息

Center for Nonlinear Phenomena and Complex Systems, Université Libre de Bruxelles, Code Postal 231, Campus Plaine, B-1050 Brussels, Belgium.

出版信息

J Theor Biol. 2007 Aug 21;247(4):672-86. doi: 10.1016/j.jtbi.2007.03.034. Epub 2007 Apr 1.

Abstract

We report a theoretical study of the F(1)-ATPase molecular rotary motor experimentally studied by R. Yasuda, H. Noji, M. Yoshida, K. Kinosita Jr., H. Itoh [Nature 410 (2001) 898]. The motor is modeled as a stochastic process for the angle of its shaft and the chemical state of its catalytic sites. The stochastic process is ruled by six coupled Fokker-Planck equations for the biased diffusion of the angle and the random jumps between the chemical states. The model reproduces the experimental observations that the motor proceeds by substeps and the rotation rate saturates at high concentrations of adenosine triphosphate or at low values of the friction coefficient. Moreover, predictions are made about the dependence of the rotation rate on temperature, and about the behavior of the F(1) motor under the effect of an external torque, especially, in the regime of synthesis of adenosine triphosphate.

摘要

我们报道了对F(1)-ATPase分子旋转马达的一项理论研究,该研究由R. Yasuda、H. Noji、M. Yoshida、K. Kinosita Jr.、H. Itoh进行了实验研究[《自然》410 (2001) 898]。该马达被建模为其轴的角度和催化位点化学状态的随机过程。该随机过程由六个耦合的福克-普朗克方程控制,用于角度的有偏扩散和化学状态之间的随机跳跃。该模型再现了实验观察结果,即马达以亚步前进,并且在高浓度三磷酸腺苷或低摩擦系数值下旋转速率达到饱和。此外,还对旋转速率对温度的依赖性以及F(1)马达在外部扭矩作用下的行为进行了预测,特别是在三磷酸腺苷合成的情况下。

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