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Effect of Intracellular pH on Rotational Speed of Bacterial Flagellar Motors

机译:细胞内pH值对细菌鞭毛马达转速的影响

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摘要

Weak acids such as acetate and benzoate, which partially collapse the transmembrane proton gradient, not only mediate pH taxis but also impair the motility of Escherichia coli and Salmonella at an external pH of 5.5. In this study, we examined in more detail the effect of weak acids on motility at various external pH values. A change of external pH over the range 5.0 to 7.8 hardly affected the swimming speed of E. coli cells in the absence of 34 mM potassium acetate. In contrast, the cells decreased their swimming speed significantly as external pH was shifted from pH 7.0 to 5.0 in the presence of 34 mM acetate. The total proton motive force of E. coli cells was not changed greatly by the presence of acetate. We measured the rotational rate of tethered E. coli cells as a function of external pH. Rotational speed decreased rapidly as the external pH was decreased, and at pH 5.0, the motor stopped completely. When the external pH was returned to 7.0, the motor restarted rotating at almost its original level, indicating that high intracellular proton (H+) concentration does not irreversibly abolish flagellar motor function. Both the swimming speeds and rotation rates of tethered cells of Salmonella also decreased considerably when the external pH was shifted from pH 7.0 to 5.5 in the presence of 20 mM benzoate. We propose that the increase in the intracellular proton concentration interferes with the release of protons from the torque-generating units, resulting in slowing or stopping of the motors.
机译:弱酸(例如乙酸盐和苯甲酸盐)会部分破坏跨膜质子梯度,不仅会介导pH的滑移,而且会在外部pH值为5.5时削弱大肠杆菌和沙门氏菌的运动性。在这项研究中,我们更详细地研究了弱酸在各种外部pH值下对运动性的影响。在没有34 mM乙酸钾的情况下,外部pH值在5.0到7.8之间变化几乎不会影响大肠杆菌细胞的游泳速度。相反,当存在34 mM醋酸盐时,由于外部pH从7.0改变为5.0,细胞的游泳速度显着降低。由于乙酸盐的存在,大肠杆菌细胞的总质子原动力没有很大变化。我们测量了拴系大肠杆菌细胞的旋转速度与外部pH的关系。随着外部pH值的降低,转速迅速降低,在pH 5.0时,电动机完全停止。当外部pH恢复到7.0时,电动机几乎以其原始水平重新开始旋转,这表明高细胞内质子(H + )浓度不会不可逆地废除鞭毛运动功能。当在20 mM苯甲酸酯存在下外部pH从7.0改变为5.5时,沙门氏菌束缚细胞的游泳速度和旋转速率也都大大降低。我们提出,细胞内质子浓度的增加会干扰质子从扭矩产生单元的释放,从而导致电机减慢或停止。

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