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Fluctuation in the microtubule sliding movement driven by kinesin in vitro.

机译:驱动蛋白在体外驱动的微管滑动运动的波动。

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摘要

We studied the fluctuation in the translational sliding movement of microtubules driven by kinesin in a motility assay in vitro. By calculating the mean-square displacement deviation from the average as a function of time, we obtained motional diffusion coefficients for microtubules and analyzed the dependence of the coefficients on microtubule length. Our analyses suggest that 1) the motional diffusion coefficient consists of the sum of two terms, one that is proportional to the inverse of the microtubule length (as the longitudinal diffusion coefficient of a filament in Brownian movement is) and another that is independent of the length, and 2) the length-dependent term decreases with increasing kinesin concentration. This latter term almost vanishes within the length range we studied at high kinesin concentrations. From the length-dependence relationship, we evaluated the friction coefficient for sliding microtubules. This value is much larger than the solvent friction and thus consistent with protein friction. The length independence of the motional diffusion coefficient observed at sufficiently high kinesin concentrations indicates the presence of correlation in the sliding movement fluctuation. This places significant constraint on the possible mechanisms of the sliding movement generation by kinesin motors in vitro.
机译:我们在动力分析中研究了驱动蛋白驱动的微管平移滑动运动的波动。通过计算随时间变化的平均值的均方位移偏差,我们获得了微管的运动扩散系数,并分析了这些系数对微管长度的依赖性。我们的分析表明,1)运动扩散系数由两个项的总和组成,一个与微管长度的倒数成正比(因为布朗运动中的长丝的纵向扩散系数是),而另一个与运动无关。 2)长度依赖性项随驱动蛋白浓度的增加而降低。在高驱动蛋白浓度下我们研究的长度范围内,后一个术语几乎消失了。从长度依赖关系,我们评估了滑动微管的摩擦系数。该值比溶剂摩擦大得多,因此与蛋白质摩擦保持一致。在足够高的驱动蛋白浓度下观察到的运动扩散系数的长度独立性表明在滑动运动波动中存在相关性。这极大地限制了驱动蛋白在体外产生滑动运动的可能机制。

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