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生物膜的保护层:一类新型两亲性蛋白的排斥功能。

The protective layer of biofilm: a repellent function for a new class of amphiphilic proteins.

机构信息

Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Groningen, the Netherlands.

出版信息

Mol Microbiol. 2012 Jul;85(1):8-11. doi: 10.1111/j.1365-2958.2012.08101.x. Epub 2012 May 30.

Abstract

Bacteria can survive harsh conditions when growing in complex communities of cells known as biofilms. The matrix of the biofilm presents a scaffold where cells are attached to each other and to the surface. The biofilm matrix is also a protective barrier that confers tolerance against various antimicrobial agents. In this issue of Molecular Microbiology, Kobayashi and Iwano (2012) show that the liquid permeability of Bacillus subtilis biofilms is determined by a small secreted protein, i.e. BslA (formerly called YuaB). BslA is important for the proper development of biofilms, but unlike exopolysaccharide and TasA, is not directly involved in cell cluster formation, and is synthesized following the production of exopolysaccharide and amyloid fibres. The amphiphilic BslA protein forms a polymer in vitro and localizes in vivo to the surface of the biofilm. The microstructures of the biofilm wrinkles are reduced in the bslA mutant strain and the liquid repellency of the biofilm surface is diminished. Exogenously added BslA(42-181) protein complements the bslA mutation and restores not only water repellency, but also the formation of aerial structures. This study demonstrates that amphiphilic proteins have an important role in liquid repellency of biofilms and it suggests that these polymers contribute to antimicrobial resistance.

摘要

当细菌在被称为生物膜的细胞复杂群落中生长时,可以在恶劣条件下存活。生物膜的基质为细胞彼此附着以及与表面附着提供了支架。生物膜基质也是一种保护性屏障,使细胞能够耐受各种抗菌剂。在本期《分子微生物学》中,Kobayashi 和 Iwano(2012)表明,枯草芽孢杆菌生物膜的液体渗透性由一种小分泌蛋白决定,即 BslA(以前称为 YuaB)。BslA 对生物膜的正常发育很重要,但与胞外多糖和 TasA 不同,它不直接参与细胞簇的形成,而是在合成胞外多糖和淀粉样纤维后合成。两亲性 BslA 蛋白在体外形成聚合物,并在体内定位于生物膜表面。bslA 突变株中生物膜的褶皱微观结构减少,生物膜表面的疏液性降低。外源性添加的 BslA(42-181)蛋白可以弥补 bslA 突变,不仅恢复了疏水性,还恢复了气生结构的形成。这项研究表明,两亲性蛋白在生物膜的疏液性中起着重要作用,并表明这些聚合物有助于抗菌剂耐药性。

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