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霍乱弧菌CsrA根据氨基酸调节ToxR水平,对毒力至关重要。

Vibrio cholerae CsrA Regulates ToxR Levels in Response to Amino Acids and Is Essential for Virulence.

作者信息

Mey Alexandra R, Butz Heidi A, Payne Shelley M

机构信息

Department of Molecular Biosciences and Institute for Cellular and Molecular Biology, The University of Texas at Austin, Austin, Texas, USA

Department of Molecular Biosciences and Institute for Cellular and Molecular Biology, The University of Texas at Austin, Austin, Texas, USA.

出版信息

mBio. 2015 Aug 4;6(4):e01064. doi: 10.1128/mBio.01064-15.

Abstract

UNLABELLED

ToxR is a major virulence gene regulator in Vibrio cholerae. Although constitutively expressed under many laboratory conditions, our previous work demonstrated that the level of ToxR increases significantly when cells are grown in the presence of the 4 amino acids asparagine, arginine, glutamate, and serine (NRES). We show here that the increase in ToxR production in response to NRES requires the Var/Csr global regulatory circuit. The VarS/VarA two-component system controls the amount of active CsrA, a small RNA-binding protein involved in the regulation of a wide range of cellular processes. Our data show that a varA mutant, which is expected to overproduce active CsrA, had elevated levels of ToxR in the absence of the NRES stimulus. Conversely, specific amino acid substitutions in CsrA were associated with defects in ToxR production in response to NRES. These data indicate that CsrA is a positive regulator of ToxR levels. Unlike previously described effects of CsrA on virulence gene regulation, the effects of CsrA on ToxR were not mediated through quorum sensing and HapR. CsrA is likely essential in V. cholerae, since a complete deletion of csrA was not possible; however, point mutations in CsrA were tolerated well. The CsrA Arg6His mutant had wild-type growth in vitro but was severely attenuated in the infant mouse model of V. cholerae infection, showing that CsrA is critical for pathogenesis. This study has broad implications for our understanding of how V. cholerae integrates its response to environmental cues with the regulation of important virulence genes.

IMPORTANCE

In order to colonize the human host, Vibrio cholerae must sense and respond to environmental signals to ensure appropriate expression of genes required for pathogenesis. Uncovering how V. cholerae senses its environment and activates its virulence gene repertoire is critical for our understanding of how V. cholerae transitions from its natural aquatic habitat to the human host. Here we demonstrate a previously unknown link between the global regulator CsrA and the major V. cholerae virulence gene regulator ToxR. The role of CsrA in the cell is to receive input from the environment and coordinate an appropriate cellular response. By linking environmental sensing to the ToxR regulon, CsrA effectively acts as a switch that controls pathogenesis in response to specific signals. We demonstrate that CsrA is critical for virulence in the infant mouse model of V. cholerae infection, consistent with its role as an in vivo regulator of virulence gene expression.

摘要

未标记

ToxR是霍乱弧菌中的一种主要毒力基因调节因子。尽管在许多实验室条件下它是组成型表达的,但我们之前的研究表明,当细胞在天冬酰胺、精氨酸、谷氨酸和丝氨酸这4种氨基酸(NRES)存在的情况下生长时,ToxR的水平会显著增加。我们在此表明,对NRES作出反应时ToxR产生量的增加需要Var/Csr全局调节回路。VarS/VarA双组分系统控制活性CsrA的量,CsrA是一种小RNA结合蛋白,参与多种细胞过程的调节。我们的数据表明,预计会过量产生活性CsrA的varA突变体在没有NRES刺激的情况下ToxR水平升高。相反,CsrA中的特定氨基酸取代与对NRES作出反应时ToxR产生的缺陷有关。这些数据表明CsrA是ToxR水平的正调节因子。与先前描述的CsrA对毒力基因调节的作用不同,CsrA对ToxR的作用不是通过群体感应和HapR介导的。CsrA在霍乱弧菌中可能是必不可少的,因为完全缺失csrA是不可能的;然而,CsrA中的点突变耐受性良好。CsrA Arg6His突变体在体外具有野生型生长,但在霍乱弧菌感染的幼鼠模型中严重减毒,表明CsrA对发病机制至关重要。这项研究对于我们理解霍乱弧菌如何将其对环境线索的反应与重要毒力基因的调节整合起来具有广泛的意义。

重要性

为了在人类宿主中定殖,霍乱弧菌必须感知并响应环境信号以确保发病所需基因的适当表达。揭示霍乱弧菌如何感知其环境并激活其毒力基因库对于我们理解霍乱弧菌如何从其自然水生栖息地转变为人类宿主至关重要。在这里,我们展示了全局调节因子CsrA与霍乱弧菌主要毒力基因调节因子ToxR之间以前未知的联系。CsrA在细胞中的作用是接收来自环境的输入并协调适当的细胞反应。通过将环境感知与ToxR调控子联系起来,CsrA有效地充当了一个开关,根据特定信号控制发病机制。我们证明CsrA在霍乱弧菌感染的幼鼠模型中对毒力至关重要,这与其作为毒力基因表达的体内调节因子的作用一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6804/4526715/1052347382cb/mbo0041524120001.jpg

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