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Torque-speed curve of the Na+-driven flagellar motor of Vibrio alginolyticus

机译:Na + 驱动的藻溶弧菌鞭毛马达的转矩-速度曲线

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The torque-speed relationship of the Na+-driven flagellar motor of Vibrio alginolyticus was investigated. The rotation rate of the motor was measured by following the position of a bead, attached to a flagellar filament, using optical nanometry. In the presence of 50 mM NaCl, the generated torque was relatively constant (∼3800 pN nm) at lower (speeds up to ∼300 Hz) and then decreased steeply, similar to the H+-driven flagellar motor of E. coli. When the external NaCl concentration was varied, the generated torque of the flagellar motor was changed over a wide range of speeds. This result could be reproduced using a simple kinetic model, which takes into consideration the association and dissociation of Na+ onto the motor. These results imply that for a complete understanding of the mechanism of flagellar rotation it is essential to consider both the electrochemical gradient and the absolute concentration of the coupling ion.
机译:研究了溶藻弧菌的Na + 驱动鞭毛马达的转矩-速度关系。使用光学纳米技术,通过跟踪附着在鞭毛细丝上的珠子的位置来测量电动机的转速。在存在50 mM NaCl的情况下,所产生的转矩在较低的频率下(至300 Hz左右)相对恒定(约3800 pN nm),然后急剧下降,类似于H + 驱动的鞭毛大肠杆菌的马达。当外部NaCl浓度变化时,鞭毛马达的产生转矩会在很宽的速度范围内变化。可以使用简单的动力学模型来再现此结果,该模型考虑了Na + 在电动机上的缔合和解离。这些结果表明,要完全了解鞭毛旋转的机理,必须同时考虑电化学梯度和偶合离子的绝对浓度。

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