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细菌菌毛的生物合成与结构

The Biosynthesis and Structures of Bacterial Pili.

作者信息

Lukaszczyk Magdalena, Pradhan Brajabandhu, Remaut Han

机构信息

Structural Biology Brussels, Vrije Universiteit Brussel, Pleinlaan 2, 1050, Brussels, Belgium.

Structural and Molecular Microbiology, Structural Biology Research Center, VIB, Pleinlaan 2, 1050, Brussels, Belgium.

出版信息

Subcell Biochem. 2019;92:369-413. doi: 10.1007/978-3-030-18768-2_12.

Abstract

To interact with the external environments, bacteria often display long proteinaceous appendages on their cell surface, called pili or fimbriae. These non-flagellar thread-like structures are polymers composed of covalently or non-covalently interacting repeated pilin subunits. Distinct pilus classes can be identified on basis of their assembly pathways, including chaperone-usher pili, type V pili, type IV pili, curli and fap fibers, conjugative and type IV secretion pili, as well as sortase-mediated pili. Pili play versatile roles in bacterial physiology, and can be involved in adhesion and host cell invasion, DNA and protein secretion and uptake, biofilm formation, cell motility and more. Recent advances in structure determination of components involved in the various pilus systems has enabled a better molecular understanding of their mechanisms of assembly and function. In this chapter we describe the diversity in structure, biogenesis and function of the different pilus systems found in Gram-positive and Gram-negative bacteria, and review their potential as anti-microbial targets.

摘要

为了与外部环境相互作用,细菌通常在其细胞表面展示出长的蛋白质附属物,称为菌毛或纤毛。这些非鞭毛状的丝状结构是由共价或非共价相互作用的重复菌毛蛋白亚基组成的聚合物。根据其组装途径可以识别出不同类别的菌毛,包括伴侣-usher菌毛、V型菌毛、IV型菌毛、卷曲纤维和fap纤维、接合和IV型分泌菌毛,以及分选酶介导的菌毛。菌毛在细菌生理学中发挥着多种作用,可参与粘附和宿主细胞侵袭、DNA和蛋白质分泌与摄取、生物膜形成、细胞运动等。各种菌毛系统中相关成分结构测定的最新进展,使得人们能够从分子层面更好地理解它们的组装和功能机制。在本章中,我们描述了革兰氏阳性菌和革兰氏阴性菌中不同菌毛系统在结构、生物发生和功能方面的多样性,并综述了它们作为抗菌靶点的潜力。

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