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细菌的生物膜、鞭毛和表面的机械感应。

Biofilms, flagella, and mechanosensing of surfaces by bacteria.

机构信息

Department of Marine Biotechnology, University of Maryland Baltimore County and Institute of Marine and Environmental Technology, 701 East Pratt Street, Baltimore, MD 21202, USA.

出版信息

Trends Microbiol. 2014 Sep;22(9):517-27. doi: 10.1016/j.tim.2014.05.002. Epub 2014 Jun 2.

Abstract

Formation of a bacterial biofilm is a developmental process that begins when a cell attaches to a surface, but how does a bacterial cell know it is on or near a surface in the first place? The phase of this 'swim-or-stick' switch is determined by a sensory transduction mechanism referred to as surface sensing, which involves the rotating bacterial flagellum. This review explores six bacterial species as models of flagellar mechanosensing of surfaces to understand the current state of our knowledge and the challenges that lie ahead. A common link between these bacteria is a requirement for the proper function of the flagellar motor stators that channel ions into the cell to drive flagellar rotation. Conditions that affect ion flow act as a signal that, ultimately, controls the master transcriptional regulatory circuits controlling the flagellar hierarchy and biofilm formation.

摘要

细菌生物膜的形成是一个发育过程,始于细胞附着在表面上,但细菌细胞最初是如何知道它在表面上或附近的呢?这个“游动或黏附”开关的阶段是由一种被称为表面感应的感觉转导机制决定的,其中涉及到旋转的细菌鞭毛。这篇综述探讨了六种细菌作为鞭毛机械感应表面的模型,以了解我们目前的知识状态和未来的挑战。这些细菌的一个共同联系是需要适当的鞭毛马达定子的功能,定子将离子导入细胞以驱动鞭毛旋转。影响离子流动的条件作为一种信号,最终控制着控制鞭毛层次结构和生物膜形成的主要转录调控回路。

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