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Structure of a group C streptococcal protein that binds to fibrinogen albumin and immunoglobulin G via overlapping modules.

机译:C组链球菌蛋白的结构通过重叠模块与血纤蛋白原白蛋白和免疫球蛋白G结合。

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摘要

Pathogenic streptococci express surface proteins that bind to host serum proteins. A novel multiple-ligand-binding protein has now been identified in a species belonging to serotype C streptococci. This protein binds to fibrinogen, albumin and IgG and was therefore designated FAI protein. The structure of the fai gene has been determined, and deletion analysis and expression of FAI fusion polypeptides revealed that the binding domain for fibrinogen and IgG is located within the nonrepetitive N-terminal half of the protein. A 93-amino acid peptide retained the ability to bind both proteins, whereas a 56-amino acid subpeptide only bound fibrinogen. IgG-binding activity required the complete fibrinogen-binding domain and an additional 37 amino acids C-terminal to it, and albumin-binding activity was only obtained with a polypeptide reflecting the complete surface-exposed region of FAI protein indicating that the binding sites for each ligand were located on overlapping modules. Signal sequence, C repeat region and C-terminus revealed high homology to group A streptococcal M proteins whereas the N-terminal region containing the fibrinogen/IgG-binding domains is completely different and exhibits no similarity to any other previously characterized protein. Thus FAI protein exhibits a framework structure that might have evolved in group C streptococci via fusion of unrelated sequences, thereby generating an albumin-binding domain in the functional context of multiple-ligand-binding activity.
机译:致病性链球菌表达与宿主血清蛋白结合的表面蛋白。现在已经在属于血清型C链球菌的物种中鉴定了新颖的多配体结合蛋白。该蛋白结合纤维蛋白原,白蛋白和IgG,因此被称为FAI蛋白。已经确定了fai基因的结构,FAI融合多肽的缺失分析和表达表明,纤维蛋白原和IgG的结合域位于该蛋白的非重复N端一半内。一个93个氨基酸的肽保留了结合两种蛋白质的能力,而一个56个氨基酸的亚肽仅结合了纤维蛋白原。 IgG结合活性需要完整的纤维蛋白原结合结构域和其C端另外的37个氨基酸,而白蛋白结合活性只能通过反映FAI蛋白完整表面暴露区域的多肽获得,这表明每个配体位于重叠的模块上。信号序列,C重复区和C端显示与A组链球菌M蛋白具有高度同源性,而含有血纤蛋白原/ IgG结合域的N端区域则完全不同,并且与任何其他先前鉴定的蛋白没有相似之处。因此,FAI蛋白显示出框架结构,该框架结构可能通过不相关序列的融合而在C组链球菌中进化,从而在多配体结合活性的功能范围内产生了白蛋白结合域。

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