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Speed of the bacterial flagellar motor near zero load depends on the number of stator units

机译:细菌鞭毛马达接近零负载的速度取决于定子单元的数量

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摘要

The bacterial flagellar motor (BFM) rotates hundreds of times per second to propel bacteria driven by an electrochemical ion gradient. The motor consists of a rotor 50 nm in diameter surrounded by up to 11 ion-conducting stator units, which exchange between motors and a membrane-bound pool. Measurements of the torque–speed relationship guide the development of models of the motor mechanism. In contrast to previous reports that speed near zero torque is independent of the number of stator units, we observe multiple speeds that we attribute to different numbers of units near zero torque in both Na+- and H+-driven motors. We measure the full torque–speed relationship of one and two H+ units in Escherichia coli by selecting the number of H+ units and controlling the number of Na+ units in hybrid motors. These experiments confirm that speed near zero torque in H+-driven motors increases with the stator number. We also measured 75 torque–speed curves for Na+-driven chimeric motors at different ion-motive force and stator number. Torque and speed were proportional to ion-motive force and number of stator units at all loads, allowing all 77 measured torque–speed curves to be collapsed onto a single curve by simple rescaling.
机译:细菌鞭毛马达(BFM)每秒旋转数百次,以推动由电化学离子梯度驱动的细菌。电机由直径为50 nm的转子组成,转子被多达11个离子导电定子单元围绕,该定子单元在电机和膜结合池之间进行交换。转矩-速度关系的测量指导了电动机机构模型的开发。与以前的报告,接近零转矩的速度与定子单元的数量无关,我们观察到多个速度归因于Na + -和H + 驱动的电机。我们通过选择H + 单位的数量并控制Na +的数量,来测量大肠杆菌中一个和两个H + 单位的完整转矩-速度关系混合电机中的单元。这些实验证实,在H + 驱动的电动机中,接近零转矩的速度随定子数的增加而增加。我们还测量了Na + 驱动的嵌合电机在不同离子动力和定子数量下的75个转矩-速度曲线。在所有负载下,转矩和速度都与离子动力和定子单元的数量成正比,通过简单的重新缩放,所有77个测得的转矩-速度曲线都可以折叠为一条曲线。

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