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群体运动期间鞭毛马达重塑需要FliL。

Flagellar motor remodeling during swarming requires FliL.

作者信息

Partridge Jonathan D, Dufour Yann, Hwang YuneSahng, Harshey Rasika M

机构信息

Department of Molecular Biosciences and the LaMontagne Center for Infectious Diseases The University of Texas at Austin, Austin, Texas, 78712, USA.

Department of Microbiology and Molecular Genetics, Michigan State University, East Lansing, Michigan, USA.

出版信息

bioRxiv. 2023 Jul 14:2023.07.14.549092. doi: 10.1101/2023.07.14.549092.

Abstract

FliL is an essential component of the flagellar machinery in some bacteria, but a conditional one in others. The conditional role is for optimal swarming in some bacteria. During swarming, physical forces associated with movement on a surface are expected to exert a higher load on the flagellum, requiring more motor torque to move. Bacterial physiology and morphology are also altered during swarming to cope with the challenges of surface navigation. FliL was reported to enhance motor output in several bacteria and observed to assemble as a ring around ion-conducting stators that power the motor. In this study we identify a common new function for FliL in diverse bacteria - and . During swarming, all these bacteria show increased cell speed and a skewed motor bias that suppresses cell tumbling. We demonstrate that these altered motor parameters, or 'motor remodeling', require FliL. Both swarming and motor remodeling can be restored in an mutant by complementation with genes from and , showing conservation of swarming-associated FliL function across phyla. In addition, we demonstrate that the strong interaction we reported earlier between FliL and the flagellar MS-ring protein FliF is confined to the RBM-3 domain of FliF that links the periplasmic rod to the cytoplasmic C-ring. This interaction may explain several phenotypes associated with the absence of FliL.

摘要

FliL是某些细菌鞭毛机制的必需组成部分,但在其他细菌中则是条件性必需成分。这种条件性作用是为了使某些细菌实现最佳群体游动。在群体游动过程中,与在表面移动相关的物理力预计会给鞭毛施加更高的负荷,这就需要更多的马达扭矩来驱动。在群体游动期间,细菌的生理和形态也会发生改变,以应对表面导航的挑战。据报道,FliL可增强多种细菌的马达输出,并且观察到它围绕为马达提供动力的离子传导定子组装成一个环。在本研究中,我们确定了FliL在多种细菌中的一个共同新功能——以及。在群体游动期间,所有这些细菌的细胞速度都会增加,并且马达偏向性会发生倾斜,从而抑制细胞翻滚。我们证明,这些改变的马达参数,即“马达重塑”,需要FliL。通过用来自和的基因进行互补,在突变体中可以恢复群体游动和马达重塑,这表明跨门存在与群体游动相关的FliL功能的保守性。此外,我们证明,我们之前报道的FliL与鞭毛MS环蛋白FliF之间的强相互作用局限于FliF的RBM-3结构域,该结构域将周质杆与细胞质C环连接起来。这种相互作用可能解释了与FliL缺失相关的几种表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ae8/10370021/1d46374207eb/nihpp-2023.07.14.549092v1-f0001.jpg

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