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RivR与小RNA RivX:CovR调控级联与Mga调控子之间缺失的环节。

RivR and the small RNA RivX: the missing links between the CovR regulatory cascade and the Mga regulon.

作者信息

Roberts Samantha A, Scott June R

机构信息

Department of Microbiology and Immunology, School of Medicine, Emory University, Atlanta, GA 30322, USA.

出版信息

Mol Microbiol. 2007 Dec;66(6):1506-22. doi: 10.1111/j.1365-2958.2007.06015.x. Epub 2007 Nov 13.

Abstract

The CovR/S two-component system regulates the transcription of many genes that are crucial for the virulence of Streptococcus pyogenes (group A Streptococcus, GAS). Previously, we demonstrated that one gene repressed directly by CovR is rivR, which encodes a member of the RofA-like family of transcriptional regulators. In this study, we deleted rivR and its downstream gene rivX in a DeltacovR background. Microarray analysis revealed that the products of the rivRX locus exert positive control over the transcription of members of the Mga regulon. Using mutational analysis, we established that rivX encodes a small regulatory RNA. We found that RivR enhances transcriptional activation by Mga in vivo and in vitro. An M1 DeltacovRDeltarivRX strain is attenuated for virulence in a murine model of invasive soft tissue infection and this attenuation is complemented by rivRX expressed from a plasmid, demonstrating the importance of the rivRX locus in pathogenesis. This study provides the first link between the CovR and Mga regulatory networks. By integrating the signals received through these two global regulators, GAS is able to select from its repertoire different combinations of specific virulence factors to express in response to a broad spectrum of environmental conditions.

摘要

CovR/S双组分系统调控许多对化脓性链球菌(A组链球菌,GAS)毒力至关重要的基因的转录。此前,我们证明了一个被CovR直接抑制的基因是rivR,它编码RofA样转录调节因子家族的一个成员。在本研究中,我们在ΔcovR背景下删除了rivR及其下游基因rivX。微阵列分析表明,rivRX基因座的产物对Mga调控子成员的转录发挥正调控作用。通过突变分析,我们确定rivX编码一种小调节RNA。我们发现RivR在体内和体外均增强了Mga的转录激活作用。在侵袭性软组织感染的小鼠模型中,M1 ΔcovRΔrivRX菌株的毒力减弱,并且这种减弱可被质粒表达的rivRX所互补,这证明了rivRX基因座在发病机制中的重要性。本研究首次建立了CovR和Mga调控网络之间的联系。通过整合通过这两个全局调节因子接收的信号,GAS能够从其全部基因中选择不同的特定毒力因子组合,以响应广泛的环境条件进行表达。

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