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补体C5的多功能C345C结构域结构的功能见解

Functional insights from the structure of the multifunctional C345C domain of C5 of complement.

作者信息

Bramham Janice, Thai Chuong-Thu, Soares Dinesh C, Uhrín Dusan, Ogata Ronald T, Barlow Paul N

机构信息

Schools of Chemistry and Biological Sciences, University of Edinburgh, West Mains Road, Edinburgh EH9 3JJ, Scotland, UK.

出版信息

J Biol Chem. 2005 Mar 18;280(11):10636-45. doi: 10.1074/jbc.M413126200. Epub 2004 Dec 14.

DOI:10.1074/jbc.M413126200
PMID:15598652
Abstract

The complement protein C5 initiates assembly of the membrane attack complex. This remarkable process results in lysis of target cells and is fundamental to mammalian defense against infection. The 150-amino acid residue domain at the C terminus of C5 (C5-C345C) is pivotal to C5 function. It interacts with enzymes that convert C5 to C5b, the first step in the assembly of the membrane attack complex; it also binds to the membrane attack complex components C6 and C7 with high affinity. Here a recombinant version of this C5-C345C domain is shown to adopt the oligosaccharide/oligonucleotide binding fold, with two helices packed against a five-stranded beta-barrel. The structure is compared with those from the netrin-like module family that have a similar fold. Residues critical to the interaction with C5-convertase cluster on a mobile, hydrophobic inter-strand loop that protrudes from the open face of the beta-barrel. The opposite, helix-dominated face of C5-C345C carries a pair of exposed hydrophobic side chains adjacent to a striking negatively charged patch, consistent with affinity for positively charged factor I modules in C6 and C7. Modeling of homologous domains from complement proteins C3 and C4, which do not participate in membrane attack complex assembly, suggests that this provisionally identified C6/C7-interacting face is indeed specific to C5.

摘要

补体蛋白C5启动膜攻击复合物的组装。这一非凡过程导致靶细胞裂解,是哺乳动物抗感染防御的基础。C5(C5-C345C)C末端的150个氨基酸残基结构域对C5功能至关重要。它与将C5转化为C5b的酶相互作用,这是膜攻击复合物组装的第一步;它还以高亲和力与膜攻击复合物成分C6和C7结合。本文展示了该C5-C345C结构域的重组形式采用了寡糖/寡核苷酸结合折叠,有两条螺旋靠在一个五链β桶上。将该结构与具有相似折叠的类netrin模块家族的结构进行了比较。与C5转化酶相互作用至关重要的残基聚集在一个从β桶开口面突出的可移动疏水链间环上。C5-C345C相对的、以螺旋为主的面带有一对暴露的疏水侧链,与一个显著的带负电荷区域相邻,这与对C6和C7中带正电荷的因子I模块的亲和力一致。对不参与膜攻击复合物组装的补体蛋白C3和C4的同源结构域进行建模表明,这个初步确定的与C6/C7相互作用的面确实是C5特有的。

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