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氢离子(H⁺)和钠离子(Na⁺)参与螺旋体钩端螺旋体的鞭毛旋转。

H(+) and Na(+) are involved in flagellar rotation of the spirochete Leptospira.

作者信息

Islam Md Shafiqul, Morimoto Yusuke V, Kudo Seishi, Nakamura Shuichi

机构信息

Department of Applied Physics, Graduate School of Engineering, Tohoku University, 6-6-05 Aoba, Aoba-ku, Sendai, Miyagi 980-8579, Japan.

Quantitative Biology Center, RIKEN, 6-2-3 Furuedai, Suita, Osaka 565-0874, Japan; Graduate School of Frontier BioSciences, Osaka University, 1-3 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

Biochem Biophys Res Commun. 2015 Oct 16;466(2):196-200. doi: 10.1016/j.bbrc.2015.09.004. Epub 2015 Sep 5.

Abstract

Leptospira is a spirochete possessing intracellular flagella. Each Leptospira flagellar filament is linked with a flagellar motor composed of a rotor and a dozen stators. For many bacterial species, it is known that the stator functions as an ion channel and that the ion flux through the stator is coupled with flagellar rotation. The coupling ion varies depending on the species; for example, H(+) is used in Escherichia coli, and Na(+) is used in Vibrio spp. to drive a polar flagellum. Although genetic and structural studies illustrated that the Leptospira flagellar motor also contains a stator, the coupling ion for flagellar rotation remains unknown. In the present study, we analyzed the motility of Leptospira under various pH values and salt concentrations. Leptospira cells displayed motility in acidic to alkaline pH. In the presence of a protonophore, the cells completely lost motility in acidic to neutral pH but displayed extremely slow movement under alkaline conditions. This result suggests that H(+) is a major coupling ion for flagellar rotation over a wide pH range; however, we also observed that the motility of Leptospira was significantly enhanced by the addition of Na(+), though it vigorously moved even under Na(+)-free conditions. These results suggest that H(+) is preferentially used and that Na(+) is secondarily involved in flagellar rotation in Leptospira. The flexible ion selectivity in the flagellar system could be advantageous for Leptospira to survive in a wide range of environment.

摘要

钩端螺旋体是一种具有细胞内鞭毛的螺旋体。每条钩端螺旋体鞭毛丝都与一个由转子和十几个定子组成的鞭毛马达相连。对于许多细菌物种而言,已知定子起着离子通道的作用,并且通过定子的离子通量与鞭毛旋转相耦合。耦合离子因物种而异;例如,大肠杆菌中使用H(+),而弧菌属中使用Na(+)来驱动极鞭毛。尽管遗传和结构研究表明钩端螺旋体鞭毛马达也包含一个定子,但鞭毛旋转的耦合离子仍然未知。在本研究中,我们分析了钩端螺旋体在各种pH值和盐浓度下运动性。钩端螺旋体细胞在酸性至碱性pH条件下均表现出运动性。在质子载体存在的情况下,细胞在酸性至中性pH条件下完全丧失运动性,但在碱性条件下表现出极缓慢的运动。这一结果表明,在较宽的pH范围内,H(+)是鞭毛旋转的主要耦合离子;然而,我们还观察到,添加Na(+)可显著增强钩端螺旋体的运动性,尽管它在无Na(+)条件下也能剧烈运动。这些结果表明,钩端螺旋体优先使用H(+),其次Na(+)参与鞭毛旋转。鞭毛系统中灵活的离子选择性可能有利于钩端螺旋体在广泛的环境中生存。

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