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大肠杆菌外膜孔蛋白TolC的排泄功能:tolC突变体中积累的代谢产物导致marA和soxS转录上调以及Rob活性增强。

An excretory function for the Escherichia coli outer membrane pore TolC: upregulation of marA and soxS transcription and Rob activity due to metabolites accumulated in tolC mutants.

作者信息

Rosner Judah L, Martin Robert G

机构信息

Laboratory of Molecular Biology, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892-0560, USA.

出版信息

J Bacteriol. 2009 Aug;191(16):5283-92. doi: 10.1128/JB.00507-09. Epub 2009 Jun 5.

Abstract

Efflux pumps function to rid bacteria of xenobiotics, including antibiotics, bile salts, and organic solvents. TolC, which forms an outer membrane channel, is an essential component of several efflux pumps in Escherichia coli. We asked whether TolC has a role during growth in the absence of xenobiotics. Because tolC transcription is activated by three paralogous activators, MarA, SoxS, and Rob, we examined the regulation of these activators in tolC mutants. Using transcriptional fusions, we detected significant upregulation of marRAB and soxS transcription and Rob protein activity in tolC mutants. Three mechanisms could be distinguished: (i) activation of marRAB transcription was independent of marRAB, soxR, and rob functions; (ii) activation of soxS transcription required SoxR, a sensor of oxidants; and (iii) Rob protein was activated posttranscriptionally. This mechanism is similar to the mechanisms of upregulation of marRAB, soxS, and Rob by treatment with certain phenolics, superoxides, and bile salts, respectively. The transcription of other marA/soxS/rob regulon promoters, including tolC itself, was also elevated in tolC mutants. We propose that TolC is involved in the efflux of certain cellular metabolites, not only xenobiotics. As these metabolites accumulate during growth, they trigger the upregulation of MarA, SoxS, and Rob, which in turn upregulate tolC and help rid the bacteria of these metabolites, thereby restoring homeostasis.

摘要

外排泵的功能是使细菌排出包括抗生素、胆盐和有机溶剂在内的外源性物质。形成外膜通道的TolC是大肠杆菌中几种外排泵的重要组成部分。我们研究了在没有外源性物质的情况下生长期间TolC是否发挥作用。由于tolC转录由三个同源激活因子MarA、SoxS和Rob激活,我们研究了tolC突变体中这些激活因子的调控情况。使用转录融合技术,我们在tolC突变体中检测到marRAB和soxS转录以及Rob蛋白活性的显著上调。可以区分出三种机制:(i)marRAB转录的激活独立于marRAB、soxR和rob的功能;(ii)soxS转录的激活需要氧化应激传感器SoxR;(iii)Rob蛋白在转录后被激活。这种机制分别类似于用某些酚类、超氧化物和胆盐处理后marRAB、soxS和Rob上调的机制。包括tolC自身在内的其他marA/soxS/rob调控子启动子的转录在tolC突变体中也升高。我们提出TolC不仅参与外源性物质的外排,还参与某些细胞代谢物的外排。随着这些代谢物在生长过程中积累,它们会触发MarA、SoxS和Rob的上调,进而上调tolC并帮助细菌排出这些代谢物,从而恢复体内平衡。

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