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整合多种刺激感知系统以调控梨火疫病菌中的HrpS和III型分泌系统。

Integration of multiple stimuli-sensing systems to regulate HrpS and type III secretion system in Erwinia amylovora.

作者信息

Lee Jae Hoon, Zhao Youfu

机构信息

Department of Crop Sciences, University of Illinois at Urbana-Champaign, 1201 W. Gregory Dr., Urbana, IL, 61801, USA.

出版信息

Mol Genet Genomics. 2018 Feb;293(1):187-196. doi: 10.1007/s00438-017-1376-3. Epub 2017 Sep 30.

Abstract

The bacterial enhancer binding protein (bEBP) HrpS is essential for Erwinia amylovora virulence by activating the type III secretion system (T3SS). However, how the hrpS gene is regulated remains poorly understood in E. amylovora. In this study, 5' rapid amplification of cDNA ends and promoter deletion analyses showed that the hrpS gene contains two promoters driven by HrpX/HrpY and the Rcs phosphorelay system, respectively. Electrophoretic mobility shift and gene expression assays demonstrated that integration host factor IHF positively regulates hrpS expression through directly binding the hrpX promoter and positively regulating hrpX/hrpY expression. Moreover, hrpX expression was down-regulated in the relA/spoT ((p)ppGpp-deficient) mutant and the dksA mutant, but up-regulated when the wild-type strain was treated with serine hydroxamate, which induced (p)ppGpp-mediated stringent response. Furthermore, the csrA mutant showed significantly reduced transcripts of major hrpS activators, including the hrpX/hrpY, rcsA and rcsB genes, indicating that CsrA is required for full hrpS expression. On the other hand, the csrB mutant exhibited up-regulation of the rcsA and rcsB genes, and hrpS expression was largely diminished in the csrB/rcsB mutant, indicating that the Rcs system is mainly responsible for the increased hrpS expression in the csrB mutant. These findings suggest that E. amylovora recruits multiple stimuli-sensing systems, including HrpX/HrpY, the Rcs phosphorelay system and the Gac-Csr system, to regulate hrpS and T3SS gene expression.

摘要

细菌增强子结合蛋白(bEBP)HrpS通过激活III型分泌系统(T3SS)对梨火疫病菌的毒力至关重要。然而,在梨火疫病菌中,hrpS基因是如何被调控的仍知之甚少。在本研究中,5' cDNA末端快速扩增和启动子缺失分析表明,hrpS基因包含两个分别由HrpX/HrpY和Rcs磷酸化信号转导系统驱动的启动子。电泳迁移率变动分析和基因表达分析表明,整合宿主因子IHF通过直接结合hrpX启动子并正向调控hrpX/hrpY表达,从而正向调控hrpS表达。此外,在relA/spoT((p)ppGpp缺陷型)突变体和dksA突变体中,hrpX表达下调,但当野生型菌株用丝氨酸羟肟酸处理诱导(p)ppGpp介导的严谨反应时,hrpX表达上调。此外,csrA突变体中主要hrpS激活因子(包括hrpX/hrpY、rcsA和rcsB基因)的转录本显著减少,表明CsrA是hrpS充分表达所必需的。另一方面,csrB突变体中rcsA和rcsB基因上调,而在csrB/rcsB突变体中hrpS表达大幅降低,表明Rcs系统主要负责csrB突变体中hrpS表达的增加。这些发现表明,梨火疫病菌利用多种刺激感应系统,包括HrpX/HrpY、Rcs磷酸化信号转导系统和Gac-Csr系统,来调控hrpS和T3SS基因表达。

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