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大肠杆菌双精氨酸转运酶TatC组分的半胱氨酸扫描诱变及拓扑图谱分析

Cysteine scanning mutagenesis and topological mapping of the Escherichia coli twin-arginine translocase TatC Component.

作者信息

Punginelli Claire, Maldonado Bárbara, Grahl Sabine, Jack Rachael, Alami Meriem, Schröder Juliane, Berks Ben C, Palmer Tracy

机构信息

Department of Molecular Microbiology, John Innes Centre, Colney Lane, Norwich NR4 7UH, United Kingdom.

出版信息

J Bacteriol. 2007 Aug;189(15):5482-94. doi: 10.1128/JB.00647-07. Epub 2007 Jun 1.

Abstract

The TatC protein is an essential component of the Escherichia coli twin-arginine (Tat) protein translocation pathway. It is a polytopic membrane protein that forms a complex with TatB, together acting as the receptor for Tat substrates. In this study we have constructed 57 individual cysteine substitutions throughout the protein. Each of the substitutions resulted in a TatC protein that was competent to support Tat-dependent protein translocation. Accessibility studies with membrane-permeant and -impermeant thiol-reactive reagents demonstrated that TatC has six transmembrane helices, rather than the four suggested by a previous study (K. Gouffi, C.-L. Santini, and L.-F. Wu, FEBS Lett. 525:65-70, 2002). Disulfide cross-linking experiments with TatC proteins containing single cysteine residues showed that each transmembrane domain of TatC was able to interact with the same domain from a neighboring TatC protein. Surprisingly, only three of these cysteine variants retained the ability to cross-link at low temperatures. These results are consistent with the likelihood that most of the disulfide cross-links are between TatC proteins in separate TatBC complexes, suggesting that TatC is located on the periphery of the complex.

摘要

TatC蛋白是大肠杆菌双精氨酸(Tat)蛋白转运途径的一个必需组分。它是一种多跨膜蛋白,与TatB形成复合物,共同作为Tat底物的受体。在本研究中,我们在整个蛋白上构建了57个单个半胱氨酸取代。每个取代都产生了一种能够支持Tat依赖性蛋白转运的TatC蛋白。使用可透过膜和不可透过膜的硫醇反应试剂进行的可及性研究表明,TatC有六个跨膜螺旋,而不是先前研究(K. Gouffi、C.-L. Santini和L.-F. Wu,《欧洲生物化学学会联合会快报》525:65 - 70,2002)所提出的四个。对含有单个半胱氨酸残基的TatC蛋白进行的二硫键交联实验表明,TatC的每个跨膜结构域都能够与相邻TatC蛋白的相同结构域相互作用。令人惊讶的是,这些半胱氨酸变体中只有三个在低温下保留了交联能力。这些结果与大多数二硫键交联存在于不同TatBC复合物中的TatC蛋白之间的可能性一致,表明TatC位于复合物的外周。

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