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首页> 外文期刊>The journal of immunology >Human C4b-Binding Protein Has Overlapping, But Not Identical, Binding Sites for C4b and Streptococcal M Proteins
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Human C4b-Binding Protein Has Overlapping, But Not Identical, Binding Sites for C4b and Streptococcal M Proteins

机译:人类C4b结合蛋白具有重叠但不是完全相同的C4b和链球菌M蛋白的结合位点

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Many strains of Streptococcus pyogenes bind C4b-binding protein (C4BP), an inhibitor of complement activation. The binding is mediated by surface M proteins in a fashion that has been suggested to mimic the binding of C4b. We have previously shown that a positively charged cluster at the interface between complement control protein domains 1 and 2 of C4BP α-chain is crucial for the C4b-C4BP interaction. To extend this observation, and to investigate the interaction with M proteins, we constructed and characterized a total of nine mutants of C4BP. We identified a key recognition surface for M proteins that overlaps with the C4b binding site because substitution of R64 and H67 by Gln dramatically reduces binding to both ligands. However, the analysis of all mutants indicates that the binding sites for C4b and M proteins are only overlapping, but not identical. Furthermore, M proteins were able to displace C4BP from immobilized C4b, whereas C4b only weakly affected binding of C4BP to immobilized M proteins. We found that the molecular mechanisms involved in these two interactions differ because the binding between M proteins and C4BP is relatively insensitive to salt in contrast to the C4BP-C4b binding. In addition, six mAbs directed against the α-chain interfered with C4b-C4BP interaction, whereas only two of them efficiently inhibited binding of C4BP to M proteins. Collectively, our results suggest that binding between C4b and C4BP is governed mostly by electrostatic interactions, while additional noncovalent forces cause tight binding of C4BP to streptococcal M proteins.
机译:化脓性链球菌的许多菌株结合补体激活的抑制剂C4b结合蛋白(C4BP)。结合是由表面M蛋白介导的,其方式已被提议模仿C4b的结合。我们先前已经证明,在C4BPα链的补体控制蛋白结构域1和2之间的界面处,带正电荷的簇对于C4b-C4BP相互作用至关重要。为了扩展此观察并调查与M蛋白的相互作用,我们构建并鉴定了总共9个C4BP突变体。我们确定了与C4b结合位点重叠的M蛋白的关键识别表面,因为Gln取代R64和H67会大大减少与两个配体的结合。但是,对所有突变体的分析表明,C4b和M蛋白的结合位点仅重叠,但不完全相同。此外,M蛋白能够从固定的C4b取代C4BP,而C4b仅弱影响C4BP与固定的M蛋白的结合。我们发现参与这两个相互作用的分子机制是不同的,因为与C4BP-C4b结合相比,M蛋白和C4BP之间的结合对盐相对不敏感。此外,有6个针对α链的mAb干扰了C4b-C4BP相互作用,而其中只有2个有效抑制C4BP与M蛋白的结合。总的来说,我们的结果表明C4b和C4BP之间的结合主要由静电相互作用控制,而其他非共价作用力导致C4BP与链球菌M蛋白紧密结合。

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