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鸟苷四磷酸(ppGpp)和DksA可能通过直接和间接机制调节大肠杆菌中胞外应激因子σE的活性。

ppGpp and DksA likely regulate the activity of the extracytoplasmic stress factor sigmaE in Escherichia coli by both direct and indirect mechanisms.

作者信息

Costanzo Alessandra, Nicoloff Herve, Barchinger Sarah E, Banta Amy B, Gourse Richard L, Ades Sarah E

机构信息

Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Mol Microbiol. 2008 Feb;67(3):619-32. doi: 10.1111/j.1365-2958.2007.06072.x. Epub 2007 Dec 12.

Abstract

One of the major signalling pathways responsible for intercompartmental communication between the cell envelope and cytoplasm in Escherichia coli is mediated by the alternative sigma factor, sigmaE. sigmaE has been studied primarily for its role in response to the misfolding of outer membrane porins. This response is essentially reactionary; cells are stressed, porin folding is disrupted, and the response is activated. sigmaE can also be activated following starvation for a variety of nutrients by the alarmone ppGpp. This response is proactive, as sigmaE is activated in the absence of any obvious damage to the cell envelope sensed by the stress signalling pathway. Here we examine the mechanism of regulation of sigmaE by ppGpp. ppGpp has been proposed to activate at least two alternative sigma factors, sigmaN and sigmaS, indirectly by altering the competition for core RNA polymerase between the alternative sigma factors and the housekeeping sigma factor, sigma70. In vivo experiments with sigmaE are consistent with this model. However, ppGpp and its cofactor DksA can also activate transcription by EsigmaEin vitro, suggesting that the effects of ppGpp on sigmaE activity are both direct and indirect.

摘要

在大肠杆菌中,负责细胞包膜与细胞质之间隔室间通讯的主要信号通路之一是由替代西格玛因子sigmaE介导的。sigmaE主要因其在外膜孔蛋白错误折叠反应中的作用而被研究。这种反应本质上是被动的;细胞受到应激,孔蛋白折叠被破坏,反应被激活。sigmaE也可以在多种营养物质饥饿时被警报素ppGpp激活。这种反应是主动的,因为在应激信号通路未检测到对细胞包膜有任何明显损伤的情况下,sigmaE就被激活了。在这里,我们研究了ppGpp对sigmaE的调控机制。有人提出,ppGpp通过改变替代西格玛因子与管家西格玛因子sigma70之间对核心RNA聚合酶的竞争,间接激活至少两种替代西格玛因子sigmaN和sigmaS。对sigmaE进行的体内实验与该模型一致。然而,ppGpp及其辅因子DksA在体外也能激活EsigmaE的转录,这表明ppGpp对sigmaE活性 的影响既有直接的也有间接的。

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