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Rectified Brownian motion and kinesin motion along microtubules - art. no. 051901

机译:沿微管的矫正布朗运动和驱动蛋白运动-艺术。没有。 051901

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摘要

The mechanism of rectified Brownian movement is used to analyze measured data for kinesin motion along microtubules. A key component of the mechanism is the diffusive movement of the microtubule binding heads of kinesin during the adenosine triphosphate (ATP) cycle. The first-passage time distribution for this step is analyzed in detail and is shown to be responsible for observed load-velocity profiles. The ATPase activity of the kinesin heads is that of a nucleotide switch and not that of a direct chemomechanical energy converter. Experimental data acquisition, rate constants, and alternative explanations are discussed. The mechanism described in this paper is fundamental to the nanobiology of intracellular processes. [References: 28]
机译:校正布朗运动的机制用于分析沿微管的驱动蛋白运动的测量数据。该机制的关键组成部分是在三磷酸腺苷(ATP)周期中驱动蛋白的微管结合头的扩散运动。详细分析了该步骤的首次通过时间分布,并显示出它负责观察到的载荷-速度曲线。驱动蛋白头的ATPase活性是核苷酸开关的活性,而不是直接化学机械能转换器的活性。讨论了实验数据采集,速率常数和替代说明。本文描述的机制是细胞内过程的纳米生物学的基础。 [参考:28]

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