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Switching Statistics of a Flagellar Motor: First-Passage Time and Dynamic Binding

机译:鞭毛马达的开关统计:首次通过时间和动态绑定

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Bacterial chemotaxis relies on the clockwise-to-counterclockwise switching (and the reverse CCW-to-CW switching) of the flagellar motor’s rotational direction. Yet, despite its central role, the switch mechanism remains poorly understood. Here we study the switch statistics of the flagellar motor using computer simulations that combine first-passage time ideas and the property of dynamic binding of CheY-P to FliM. The simulated clockwise bias and switching frequency as a function of CheY-P concentration agree with the experimental results for E. coli. Moreover, the simulation results show a robust peak, which is present in some experimental reports, in the distribution of the time intervals of both clockwise and counterclockwise rotation.
机译:细菌趋化依赖于鞭毛马达旋转方向的顺时针到逆时针切换(以及逆时针到顺时针切换)。然而,尽管起着中心作用,但对转换机制的了解仍然很少。在这里,我们使用计算机模拟研究鞭毛马达的开关统计数据,该模拟结合了首次通过时间的思想和CheY-P与FliM的动态结合特性。作为CheY-P浓度的函数的模拟顺时针偏置和开关频率与大肠杆菌的实验结果一致。此外,仿真结果显示了一个稳健的峰值,该峰值出现在一些实验报告中,同时出现了顺时针和逆时针旋转的时间间隔分布。

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