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A组链球菌的M蛋白与人补体因子H的第七个短共有重复序列结合。

M protein of the group A Streptococcus binds to the seventh short consensus repeat of human complement factor H.

作者信息

Blackmore T K, Fischetti V A, Sadlon T A, Ward H M, Gordon D L

机构信息

Department of Microbiology and Infectious Diseases, Flinders University of South Australia and Flinders Medical Centre, Bedford Park.

出版信息

Infect Immun. 1998 Apr;66(4):1427-31. doi: 10.1128/IAI.66.4.1427-1431.1998.

Abstract

Streptococcus pyogenes evades complement by binding the complement-regulatory protein factor H (fH) via the central conserved C-repeat region of M protein. However, the corresponding binding region within fH has not previously been precisely localized. fH is composed of 20 conserved modules called short consensus repeats (SCRs), each of which contains approximately 60 amino acids. A series of fH truncated and deletion mutants were prepared, and their interaction with M6 protein was examined. The M protein binding site was initially localized to SCRs 6 to 15 as demonstrated by ligand dot blotting, chemical cross-linking, and enzyme-linked immunosorbent assay. SCR 7 was then shown to contain the M protein binding site, as a construct consisting of the first seven SCRs bound M protein but a construct containing the first six SCRs did not bind. In addition, deletion of SCR 7 from full-length fH abolished binding to M protein. SCR 7 is known to contain a heparin binding domain, and binding of fH to M6 protein was almost totally inhibited in the presence of 400 U of heparin per ml. These results localize the M6 protein binding site of fH to SCR 7 and indicate that it is in close proximity to the heparin binding site.

摘要

化脓性链球菌通过M蛋白的中央保守C重复区域结合补体调节蛋白H因子(fH)来逃避补体。然而,fH内相应的结合区域此前尚未被精确定位。fH由20个称为短共有重复序列(SCR)的保守模块组成,每个模块包含约60个氨基酸。制备了一系列fH截短和缺失突变体,并检测它们与M6蛋白的相互作用。如配体斑点印迹、化学交联和酶联免疫吸附测定所示,M蛋白结合位点最初定位于SCR 6至15。随后发现SCR 7包含M蛋白结合位点,因为由前七个SCR组成的构建体结合M蛋白,而包含前六个SCR的构建体不结合。此外,从全长fH中缺失SCR 7消除了与M蛋白的结合。已知SCR 7包含一个肝素结合域,在每毫升400 U肝素存在的情况下,fH与M6蛋白的结合几乎完全被抑制。这些结果将fH的M6蛋白结合位点定位于SCR 7,并表明它与肝素结合位点紧密相邻。

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