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大肠杆菌MC4100菌株中Cpx调节子的特性分析。

Characterization of the Cpx regulon in Escherichia coli strain MC4100.

作者信息

Price Nancy L, Raivio Tracy L

机构信息

Department of Biological Sciences, University of Alberta, Edmonton, Alberta, Canada T6G 2E9.

出版信息

J Bacteriol. 2009 Mar;191(6):1798-815. doi: 10.1128/JB.00798-08. Epub 2008 Dec 19.

Abstract

The Cpx two-component signal transduction pathway of Escherichia coli mediates adaptation to envelope protein misfolding. However, there is experimental evidence that at least 50 genes in 34 operons are part of the Cpx regulon and many have functions that are undefined or unrelated to envelope protein maintenance. No comprehensive analysis of the Cpx regulon has been presented to date. In order to identify strongly Cpx-regulated genes that might play an important role(s) in envelope protein folding and/or to further define the role of the Cpx response and to gain insight into what makes a gene subject to strong Cpx regulation, we have carried out a uniform characterization of a Cpx-regulated lux reporter library in a single-strain background. Strongly Cpx-regulated genes encode proteins that are directly linked to envelope protein folding, localized to the envelope but uncharacterized, or involved in limiting the cellular concentration of noxious molecules. Moderately Cpx-regulated gene clusters encode products implicated in biofilm formation. An analysis of CpxR binding sites in strongly regulated genes indicates that while neither a consensus match nor their orientation predicts the strength of Cpx regulation, most genes contain a CpxR binding site within 100 bp of the transcriptional start site. Strikingly, we found that while there appears to be little overlap between the Cpx and Bae envelope stress responses, the sigma(E) and Cpx responses reciprocally regulate a large group of strongly Cpx-regulated genes, most of which are uncharacterized.

摘要

大肠杆菌的Cpx双组分信号转导途径介导对包膜蛋白错误折叠的适应性。然而,有实验证据表明,34个操纵子中的至少50个基因是Cpx调控子的一部分,其中许多基因的功能未明确或与包膜蛋白维持无关。迄今为止,尚未对Cpx调控子进行全面分析。为了鉴定可能在包膜蛋白折叠中起重要作用的受Cpx强烈调控的基因,进一步明确Cpx应答的作用,并深入了解是什么使一个基因受到强烈的Cpx调控,我们在单一菌株背景下对受Cpx调控的lux报告基因文库进行了统一表征。受Cpx强烈调控的基因编码的蛋白质与包膜蛋白折叠直接相关,定位于包膜但未被表征,或参与限制有害分子的细胞浓度。受Cpx中度调控的基因簇编码与生物膜形成有关的产物。对受强烈调控基因中CpxR结合位点的分析表明,虽然共有序列匹配及其方向都不能预测Cpx调控的强度,但大多数基因在转录起始位点100 bp内都含有一个CpxR结合位点。引人注目的是,我们发现虽然Cpx和Bae包膜应激反应之间似乎几乎没有重叠,但σ(E)和Cpx反应相互调节一大组受Cpx强烈调控的基因,其中大多数基因尚未被表征。

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