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细菌运动性:机制与原理

Bacterial motility: machinery and mechanisms.

作者信息

Wadhwa Navish, Berg Howard C

机构信息

Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA, USA.

出版信息

Nat Rev Microbiol. 2022 Mar;20(3):161-173. doi: 10.1038/s41579-021-00626-4. Epub 2021 Sep 21.

Abstract

Bacteria have developed a large array of motility mechanisms to exploit available resources and environments. These mechanisms can be broadly classified into swimming in aqueous media and movement over solid surfaces. Swimming motility involves either the rotation of rigid helical filaments through the external medium or gyration of the cell body in response to the rotation of internal filaments. On surfaces, bacteria swarm collectively in a thin layer of fluid powered by the rotation of rigid helical filaments, they twitch by assembling and disassembling type IV pili, they glide by driving adhesins along tracks fixed to the cell surface and, finally, non-motile cells slide over surfaces in response to outward forces due to colony growth. Recent technological advances, especially in cryo-electron microscopy, have greatly improved our knowledge of the molecular machinery that powers the various forms of bacterial motility. In this Review, we describe the current understanding of the physical and molecular mechanisms that allow bacteria to move around.

摘要

细菌已经进化出大量的运动机制来利用可用资源和环境。这些机制大致可分为在水性介质中游泳和在固体表面移动。游泳运动涉及刚性螺旋丝在外部介质中的旋转或细胞体响应内部丝的旋转而旋转。在表面上,细菌通过刚性螺旋丝的旋转在一层薄薄的流体中集体游动,它们通过组装和拆卸IV型菌毛进行抽动,它们通过沿着固定在细胞表面的轨道驱动粘附素来滑行,最后,不运动的细胞响应由于菌落生长产生的向外力在表面上滑动。最近的技术进步,特别是冷冻电子显微镜技术的进步,极大地提高了我们对驱动各种形式细菌运动的分子机制的认识。在这篇综述中,我们描述了目前对使细菌能够四处移动的物理和分子机制的理解。

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