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IV 型分泌机制:分子结构与功能。

Type IV secretion machinery: molecular architecture and function.

机构信息

Division of Molecular Biosciences, Centre for Structural Biology, Imperial College London, South Kensington, London SW7 2AZ, UK.

出版信息

Biochem Soc Trans. 2013 Feb 1;41(1):17-28. doi: 10.1042/BST20120332.

Abstract

Bacteria have evolved several secretion machineries to bring about transport of various virulence factors, nutrients, nucleic acids and cell-surface appendages that are essential for their pathogenesis. T4S (Type IV secretion) systems are versatile secretion systems found in various Gram-negative and Gram-positive bacteria and in few archaea. They are large multisubunit translocons secreting a diverse array of substrates varying in size and nature from monomeric proteins to nucleoprotein complexes. T4S systems have evolved from conjugation machineries and are implicated in antibiotic resistance gene transfer and transport of virulence factors in Legionella pneumophila causing Legionnaires' disease, Brucella suis causing brucellosis and Helicobacter pylori causing gastroduodenal diseases. The best-studied are the Agrobacterium tumefaciens VirB/D4 and the Escherichia coli plasmid pKM101 T4S systems. Recent structural advances revealing the cryo-EM (electron microscopy) structure of the core translocation assembly and high-resolution structure of the outer-membrane pore of T4S systems have made paradigm shifts in the understanding of T4S systems. The present paper reviews the advances made in biochemical and structural studies and summarizes our current understanding of the molecular architecture of this mega-assembly.

摘要

细菌已经进化出几种分泌机制,以实现各种毒力因子、营养物质、核酸和细胞表面附属物的运输,这些对于它们的发病机制至关重要。T4S(Type IV secretion)系统是一种多功能分泌系统,存在于各种革兰氏阴性和革兰氏阳性细菌以及少数古细菌中。它们是大型多亚基转运子,分泌各种大小和性质的底物,从单体蛋白到核蛋白复合物。T4S 系统是从共轭机制进化而来的,与抗生素耐药基因转移和军团菌引起的军团病、猪布鲁氏菌引起的布鲁氏菌病以及幽门螺杆菌引起的胃肠疾病等毒力因子的运输有关。研究最深入的是根癌农杆菌 VirB/D4 和大肠杆菌质粒 pKM101 T4S 系统。最近的结构进展揭示了 T4S 系统核心转运组装的 cryo-EM(电子显微镜)结构和外膜孔的高分辨率结构,这使得我们对 T4S 系统的理解发生了范式转变。本文综述了生化和结构研究方面的进展,并总结了我们目前对这个巨型组装体的分子结构的理解。

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