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M6型A组链球菌的Scl1蛋白与人补体调节蛋白H因子结合,并抑制补体的替代途径。

The Scl1 protein of M6-type group A Streptococcus binds the human complement regulatory protein, factor H, and inhibits the alternative pathway of complement.

作者信息

Caswell Clayton C, Han Runlin, Hovis Kelley M, Ciborowski Pawel, Keene Douglas R, Marconi Richard T, Lukomski Slawomir

机构信息

Department of Microbiology, Immunology, and Cell Biology, School of Medicine, West Virginia University, Morgantown, WV 26506, USA.

出版信息

Mol Microbiol. 2008 Feb;67(3):584-96. doi: 10.1111/j.1365-2958.2007.06067.x. Epub 2007 Dec 18.

Abstract

Non-specific activation of the complement system is regulated by the plasma glycoprotein factor H (FH). Bacteria can avoid complement-mediated opsonization and phagocytosis through acquiring FH to the cell surface. Here, we characterize an interaction between the streptococcal collagen-like protein Scl1.6 of M6-type group A Streptococcus (GAS) and FH. Using affinity chromatography with immobilized recombinant Scl1.6 protein, we co-eluted human plasma proteins with molecular weight of 155 kDa, 43 kDa and 38 kDa. Mass spectrometry identified the 155 kDa band as FH and two other bands as isoforms of the FH-related protein-1. The identities of all three bands were confirmed by Western immunoblotting with specific antibodies. Structure-function relation studies determined that the globular domain of the Scl1.6 variant specifically binds FH while fused to collagenous tails of various lengths. This binding is not restricted to Scl1.6 as the phylogenetically linked Scl1.55 variant also binds FH. Functional analyses demonstrated the cofactor activity of the rScl1.6-bound FH for factor I-mediated cleavage of C3b. Finally, purified FH bound to the Scl1.6 protein present in the cell wall material obtained from M6-type GAS. In conclusion, we have identified a functional interaction between Scl1 and plasma FH, which may contribute to GAS evasion of complement-mediated opsonization and phagocytosis.

摘要

补体系统的非特异性激活受血浆糖蛋白因子H(FH)调控。细菌可通过获取细胞表面的FH来避免补体介导的调理吞噬作用。在此,我们描述了M6型A组链球菌(GAS)的链球菌胶原样蛋白Scl1.6与FH之间的相互作用。使用固定化重组Scl1.6蛋白进行亲和层析,我们共洗脱了分子量为155 kDa、43 kDa和38 kDa的人血浆蛋白。质谱鉴定155 kDa条带为FH,另外两条带为FH相关蛋白-1的异构体。用特异性抗体进行的Western免疫印迹证实了所有三条带的身份。结构-功能关系研究确定,Scl1.6变体的球状结构域在与不同长度的胶原尾巴融合时特异性结合FH。这种结合不限于Scl1.6,因为系统发育相关的Scl1.55变体也结合FH。功能分析表明,rScl1.6结合的FH对因子I介导的C3b裂解具有辅助因子活性。最后,纯化的FH与从M6型GAS获得的细胞壁材料中存在的Scl1.6蛋白结合。总之,我们鉴定了Scl1与血浆FH之间的功能性相互作用,这可能有助于GAS逃避补体介导的调理吞噬作用。

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