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Dynamics of the Bacterial Flagellar Motor: The Effects of Stator Compliance Back Steps Temperature and Rotational Asymmetry

机译:细菌鞭毛马达的动力学:定子顺应性后台阶温度和旋转不对称的影响

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摘要

The rotation of a bacterial flagellar motor (BFM) is driven by multiple stators tethered to the cell wall. Here, we extend a recently proposed power-stroke model to study the BFM dynamics under different biophysical conditions. Our model explains several key experimental observations and reveals their underlying mechanisms. 1), The observed independence of the speed at low load on the number of stators is explained by a force-dependent stepping mechanism that is independent of the strength of the stator tethering spring. Conversely, without force-dependent stepping, an unrealistically weak stator spring is required. 2), Our model with back-stepping naturally explains the observed absence of a barrier to backward rotation. Using the same set of parameters, it also explains BFM behaviors in the high-speed negative-torque regime. 3), From the measured temperature dependence of the maximum speed, our model shows that stator-stepping is a thermally activated process with an energy barrier. 4), The recently observed asymmetry in the torque-speed curve between counterclockwise- and clockwise-rotating BFMs can be quantitatively explained by the asymmetry in the stator-rotor interaction potentials, i.e., a quasilinear form for the counterclockwise motor and a quadratic form for the clockwise motor.
机译:细菌鞭毛马达(BFM)的旋转由拴在细胞壁上的多个定子驱动。在这里,我们扩展了最近提出的动力冲程模型,以研究不同生物物理条件下的BFM动力学。我们的模型解释了几个关键的实验观察,并揭示了它们的潜在机制。 1),在低负载下观察到的速度对定子数量的独立性是通过一个与力相关的步进机构来解释的,该机构独立于定子束缚弹簧的强度。相反,如果没有依赖于力的步进,则需要一个不切实际的弱定子弹簧。 2),我们的后推模型自然可以解释观察到的没有向后旋转的障碍。使用相同的参数集,它还解释了高速负转矩状态下的BFM行为。 3),根据测得的最大速度的温度依赖性,我们的模型表明,定子步进是具有能量屏障的热激活过程。 4),最近观察到的逆时针旋转和顺时针旋转BFM之间的转矩-速度曲线的不对称性可以通过定子-转子相互作用势的不对称性来定量地解释,即,逆时针电动机的准线性形式和顺时针方向的马达。

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