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运用生物信息学与实验相结合的策略,分析西格玛E包膜应激反应的两个负调控因子RseA和RseB之间的相互作用。

Analyzing the interaction of RseA and RseB, the two negative regulators of the sigmaE envelope stress response, using a combined bioinformatic and experimental strategy.

作者信息

Ahuja Nidhi, Korkin Dmitry, Chaba Rachna, Cezairliyan Brent O, Sauer Robert T, Kim Kyeong Kyu, Gross Carol A

机构信息

Department of Microbiology and Immunology, University of California, San Francisco, California 94158, USA.

出版信息

J Biol Chem. 2009 Feb 20;284(8):5403-13. doi: 10.1074/jbc.M806012200. Epub 2008 Dec 22.

Abstract

The Escherichia coli envelope stress response is controlled by the alternative sigma factor, sigma(E), and is induced when unfolded outer membrane proteins accumulate in the periplasm. The response is initiated by sequential cleavage of the membrane-spanning antisigma factor, RseA. RseB is an important negative regulator of envelope stress response that exerts its negative effects onsigma(E) activity through its binding to RseA. In this study, we analyze the interaction between RseA and RseB. We found that tight binding of RseB to RseA required intact RseB. Using programs that performed global and local sequence alignment of RseB and RseA, we found regions of high similarity and performed alanine substitution mutagenesis to test the hypothesis that these regions were functionally important. This protocol is based on the hypothesis that functionally dependent regions of two proteins co-evolve and therefore are likely to be sequentially conserved. This procedure allowed us to identify both an N-terminal and C-terminal region in RseB important for binding to RseA. We extensively analyzed the C-terminal region, which aligns with a region of RseA coincident with the major RseB binding determinant in RseA. Both allele-specific suppression analysis and cysteine-mediated disulfide bond formation indicated that this C-terminal region of similarity of RseA and RseB identifies a contact site between the two proteins. We suggest a similar protocol can be successfully applied to pairs of non-homologous but functionally linked proteins to find specific regions of the protein sequences that are important for establishing functional linkage.

摘要

大肠杆菌包膜应激反应由替代西格玛因子西格玛(E)控制,当未折叠的外膜蛋白在周质中积累时被诱导。该反应由跨膜抗西格玛因子RseA的顺序切割启动。RseB是包膜应激反应的重要负调节因子,它通过与RseA结合对西格玛(E)活性发挥负面影响。在本研究中,我们分析了RseA与RseB之间的相互作用。我们发现RseB与RseA的紧密结合需要完整的RseB。使用对RseB和RseA进行全局和局部序列比对的程序,我们发现了高度相似的区域,并进行了丙氨酸替代诱变,以检验这些区域具有功能重要性的假设。该方案基于两种蛋白质的功能依赖区域共同进化且因此可能在序列上保守的假设。该程序使我们能够确定RseB中对与RseA结合重要的N端和C端区域。我们广泛分析了C端区域,该区域与RseA中与RseA主要RseB结合决定簇一致的区域对齐。等位基因特异性抑制分析和半胱氨酸介导的二硫键形成均表明,RseA和RseB的这个C端相似区域确定了两种蛋白质之间的接触位点。我们建议类似的方案可以成功应用于非同源但功能相关的蛋白质对,以找到对建立功能联系重要的蛋白质序列的特定区域。

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