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革兰氏阴性菌中的V型分泌系统

Type V Secretion in Gram-Negative Bacteria.

作者信息

Bernstein Harris D

机构信息

Genetics and Biochemistry Branch, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892.

出版信息

EcoSal Plus. 2019 Feb;8(2). doi: 10.1128/ecosalplus.ESP-0031-2018.

Abstract

Type V, or "autotransporter," secretion is a term used to refer to several simple protein export pathways that are found in a wide range of Gram-negative bacteria. Autotransporters are generally single polypeptides that consist of an extracellular ("passenger") domain and a β barrel domain that anchors the protein to the outer membrane (OM). Although it was originally proposed that the passenger domain is secreted through a channel formed solely by the covalently linked β barrel domain, experiments performed primarily on the type Va, or "classical," autotransporter pathway have challenged this hypothesis. Several lines of evidence strongly suggest that both the secretion of the passenger domain and the membrane integration of the β barrel domain are catalyzed by the barrel assembly machinery (Bam) complex, a conserved hetero-oligomer that plays an essential role in the assembly of most integral OM proteins. The secretion reaction appears to be driven at least in part by the folding of the passenger domain in the extracellular space. Although many aspects of autotransporter biogenesis remain to be elucidated, it will be especially interesting to determine whether the different classes of proteins that fall under the type V rubric-most of which have not been examined in detail-are assembled by the same basic mechanism as classical autotransporters.

摘要

V型分泌,即“自转运体”分泌,是一个用于指代多种简单蛋白质输出途径的术语,这些途径存在于多种革兰氏阴性细菌中。自转运体通常是单条多肽链,由一个细胞外(“乘客”)结构域和一个将蛋白质锚定在外膜(OM)上的β桶状结构域组成。尽管最初有人提出乘客结构域是通过仅由共价连接的β桶状结构域形成的通道分泌的,但主要针对Va型或“经典”自转运体途径进行的实验对这一假设提出了挑战。几条证据有力地表明,乘客结构域的分泌和β桶状结构域的膜整合都是由桶组装机器(Bam)复合体催化的,Bam复合体是一种保守的异源寡聚体,在大多数整合外膜蛋白的组装中起着至关重要的作用。分泌反应似乎至少部分是由乘客结构域在细胞外空间的折叠驱动的。尽管自转运体生物发生的许多方面仍有待阐明,但确定V型分类下的不同类蛋白质(其中大多数尚未详细研究)是否通过与经典自转运体相同的基本机制组装将尤其有趣。

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