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志贺氏菌毒力基因调控级联的 VirB 介导的正反馈控制。

VirB-mediated positive feedback control of the virulence gene regulatory cascade of Shigella flexneri.

机构信息

Department of Microbiology, Moyne Institute of Preventive Medicine, School of Genetics and Microbiology, Trinity College Dublin, Dublin, Ireland.

出版信息

J Bacteriol. 2012 Oct;194(19):5264-73. doi: 10.1128/JB.00800-12. Epub 2012 Jul 20.

Abstract

Shigella flexneri is a facultative intracellular pathogen that relies on a type III secretion system and its associated effector proteins to cause bacillary dysentery in humans. The genes that encode this virulence system are located on a 230-kbp plasmid and are transcribed in response to thermal, osmotic, and pH signals that are characteristic of the human lower gut. The virulence genes are organized within a regulatory cascade, and the nucleoid-associated protein H-NS represses each of the key promoters. Transcription derepression depends first on the VirF AraC-like transcription factor, a protein that antagonizes H-NS-mediated repression at the intermediate regulatory gene virB. The VirB protein in turn remodels the H-NS-DNA nucleoprotein complexes at the promoters of the genes encoding the type III secretion system and effector proteins, causing these genes to become derepressed. In this study, we show that the VirB protein also positively regulates the expression of its own gene (virB) via a cis-acting regulatory sequence. In addition, VirB positively regulates the gene coding for the VirF protein. This study reveals two hitherto uncharacterized feedback regulatory loops in the S. flexneri virulence cascade that provide a mechanism for the enhanced expression of the principal virulence regulatory genes.

摘要

福氏志贺菌是一种兼性细胞内病原体,它依赖于 III 型分泌系统及其相关效应蛋白在人体中引起细菌性痢疾。编码该毒力系统的基因位于一个 230kbp 的质粒上,并响应人体下肠道特有的热、渗透和 pH 信号转录。毒力基因在一个调控级联中组织,核相关蛋白 H-NS 抑制每个关键启动子。转录去阻遏首先取决于 VirF AraC 样转录因子,该蛋白拮抗 VirB 中间调节基因中 H-NS 介导的抑制。VirB 蛋白反过来重塑编码 III 型分泌系统和效应蛋白的基因启动子处的 H-NS-DNA 核蛋白复合物,导致这些基因去抑制。在这项研究中,我们表明 VirB 蛋白还通过顺式作用调节序列正向调节其自身基因(virB)的表达。此外,VirB 正向调节编码 VirF 蛋白的基因。这项研究揭示了福氏志贺菌毒力级联中的两个迄今未被表征的反馈调节环,为主要毒力调节基因的增强表达提供了一种机制。

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