Muramoto K, Kawagishi I, Kudo S, Magariyama Y, Imae Y, Homma M
Department of Molecular Biology, Faculty of Science, Nagoya University, Japan.
J Mol Biol. 1995 Aug 4;251(1):50-8. doi: 10.1006/jmbi.1995.0415.
The Na(+)-driven flagellar motor in Vibrio alginolyticus rotates very fast. Rotation of a single flagellum on a stuck cell was measured by laser darkfield microscopy with submillisecond temporal resolution. The rotation rate increased with increasing external concentration of NaCl, and reached 1000 r.p.s. at 300 mM NaCl. The Na+ influx through the motor should determine the rotation period (tau) and affect the speed stability. Fluctuation of the rotation period was analyzed at various rotation rates (from approximately 50 r.p.s. to approximately 1000 r.p.s.), which were changed by changing the external concentration of NaCl and the addition of a protonophore or a specific inhibitor. At high rotation rates (over 400 r.p.s.), the observed rotation was stable, and the standard deviation of tau (sigma tau) ranged from 7% to 16% of the average rotation period (< tau >). At low rotation rates (under 100 r.p.s), the rotation period tended to fluctuate, and the distributions of tau were non-Gaussian. The value of sigma tau ranged from 10 to 30% of < tau >. However, the observed minimum value of sigma tau at various rotation rates was approximately equal to the calculated standard deviation due to the rotational diffusion of the flagellar filament. These results suggest that the torque was stably generated at various Na+ influxes through the motor. We observed large fluctuations that cannot be explained by rotational diffusion. We discuss the factors that induce the large fluctuation.
溶藻弧菌中由钠离子驱动的鞭毛马达旋转速度非常快。通过具有亚毫秒时间分辨率的激光暗场显微镜测量了附着细胞上单个鞭毛的旋转。旋转速率随着外部氯化钠浓度的增加而增加,在300 mM氯化钠时达到1000转/秒。通过马达的钠离子内流应决定旋转周期(tau)并影响速度稳定性。在各种旋转速率(从约50转/秒到约1000转/秒)下分析了旋转周期的波动,这些旋转速率通过改变外部氯化钠浓度以及添加质子载体或特异性抑制剂来改变。在高旋转速率(超过400转/秒)下,观察到的旋转是稳定的,tau的标准偏差(sigma tau)范围为平均旋转周期(