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趋化系统在群体游动中的机械作用。

A mechanical role for the chemotaxis system in swarming motility.

作者信息

Mariconda Susana, Wang Qingfeng, Harshey Rasika M

机构信息

Section of Molecular Genetics and Microbiology & Institute of Cellular and Molecular Biology, University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Mol Microbiol. 2006 Jun;60(6):1590-602. doi: 10.1111/j.1365-2958.2006.05208.x.

Abstract

The chemotaxis system, but not chemotaxis, is essential for swarming motility in Salmonella enterica serovar Typhimurium. Mutants in the chemotaxis pathway exhibit fewer and shorter flagella, downregulate class 3 or 'late' motility genes, and appear to be less hydrated when propagated on a surface. We show here that the output of the chemotaxis system, CheY approximately P, modulates motor bias during swarming as it does during chemotaxis, but for a distinctly different end. A constitutively active form of CheY was found to promote swarming in the absence of several upstream chemotaxis components. Two point mutations that suppressed the swarming defect of a cheY null mutation mapped to FliM, a protein in the motor switch complex with which CheY approximately P interacts. A common property of these suppressors was their increased frequency of motor reversal. These and other data suggest that the ability to switch motor direction is important for promoting optimal surface wetness. If the surface is sufficiently wet, exclusively clockwise or counterclockwise directions of motor rotation will support swarming, suggesting also that the bacteria can move on a surface with flagellar bundles of either handedness.

摘要

趋化系统而非趋化作用,对于鼠伤寒沙门氏菌的群体游动至关重要。趋化途径中的突变体鞭毛数量减少且变短,下调3类或“晚期”运动基因,并且在表面繁殖时似乎水分含量较低。我们在此表明,趋化系统的输出产物CheY-P在群体游动过程中如同在趋化过程中一样调节鞭毛马达偏向,但目的明显不同。发现一种组成型激活形式的CheY在缺少几种上游趋化组分的情况下能促进群体游动。抑制cheY基因敲除突变体群体游动缺陷的两个点突变定位于FliM,FliM是鞭毛马达开关复合体中的一种蛋白质,CheY-P与之相互作用。这些抑制子的一个共同特性是它们的马达反转频率增加。这些以及其他数据表明,改变马达方向的能力对于促进最佳表面湿润度很重要。如果表面足够湿润,马达仅沿顺时针或逆时针方向旋转就能支持群体游动,这也表明细菌能够利用任何一种旋向的鞭毛束在表面移动。

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