Oliver David C, Paetzel Mark
Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, British Columbia V5A 1S6, Canada.
J Biol Chem. 2008 Feb 22;283(8):5208-16. doi: 10.1074/jbc.M708936200. Epub 2007 Dec 19.
The essential bacterial membrane protein YidC facilitates insertion and assembly of proteins destined for integration into the inner membrane. It has homologues in both mitochondria and chloroplasts. Here we report the crystal structure of the Escherichia coli YidC major periplasmic domain (YidCECP1) at 2.5A resolution. This domain is present in YidC from Gram-negative bacteria and is more than half the size of the full-length protein. The structure reveals that YidCECP1 is made up of a large twisted beta-sandwich protein fold with a C-terminal alpha-helix that packs against one face of the beta-sandwich. Our structure and sequence analysis reveals that the C-terminal alpha-helix and the beta-sheet that it lays against are the most conserved regions of the domain. The region corresponding to the C-terminal alpha-helix was previously shown to be important for the protein insertase function of YidC and is conserved in other YidC-like proteins. The structure reveals that a region of YidC that was previously shown to be involved in binding to SecF maps to one edge of the beta-sandwich. Electrostatic analysis of the molecular surface for this region of YidC reveals a predominantly charged surface and suggests that the SecF-YidC interaction may be electrostatic in nature. Interestingly, YidCECP1 has significant structural similarity to galactose mutarotase from Lactococcus lactis, suggesting that this domain may have another function besides its role in membrane protein assembly.
必需的细菌膜蛋白YidC促进注定整合到内膜中的蛋白质的插入和组装。它在线粒体和叶绿体中都有同源物。在此,我们报告了大肠杆菌YidC主要周质结构域(YidCECP1)在2.5埃分辨率下的晶体结构。该结构域存在于革兰氏阴性菌的YidC中,其大小超过全长蛋白的一半。结构显示YidCECP1由一个大的扭曲β-折叠三明治蛋白折叠组成,其C端α-螺旋靠在β-折叠三明治的一个面上。我们的结构和序列分析表明,C端α-螺旋及其所靠的β-片层是该结构域最保守的区域。先前已表明,对应于C端α-螺旋的区域对YidC的蛋白插入酶功能很重要,并且在其他YidC样蛋白中保守。结构显示,YidC中先前已表明参与与SecF结合的一个区域映射到β-折叠三明治的一条边缘。对YidC该区域分子表面的静电分析揭示了一个主要带电荷的表面,并表明SecF-YidC相互作用可能本质上是静电作用。有趣的是,YidCECP1与乳酸乳球菌的半乳糖变旋酶具有显著的结构相似性,这表明该结构域除了在膜蛋白组装中的作用外可能还有另一个功能。