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源自链球菌M蛋白的分离高变区特异性结合人C4b结合蛋白:对抗原变异的影响。

Isolated hypervariable regions derived from streptococcal M proteins specifically bind human C4b-binding protein: implications for antigenic variation.

作者信息

Morfeldt E, Berggård K, Persson J, Drakenberg T, Johnsson E, Lindahl E, Linse S, Lindahl G

机构信息

Department of Medical Microbiology, Dermatology, and Infection, Lund University, Sölvegatan 23, SE-22362 Lund, Sweden.

出版信息

J Immunol. 2001 Oct 1;167(7):3870-7. doi: 10.4049/jimmunol.167.7.3870.

Abstract

Antigenic variation in microbial surface proteins represents an apparent paradox, because the variable region must retain an important function, while exhibiting extensive immunological variability. We studied this problem for a group of streptococcal M proteins in which the approximately 50-residue hypervariable regions (HVRs) show essentially no residue identity but nevertheless bind the same ligand, the human complement regulator C4b-binding protein (C4BP). Synthetic peptides derived from different HVRs were found to retain the ability to bind C4BP, implying that the HVR corresponds to a distinct ligand-binding domain that can be studied in isolated form. This finding allowed direct characterization of the ligand-binding properties of isolated HVRs and permitted comparisons between different HVRs in the absence of conserved parts of the M proteins. Affinity chromatography of human serum on immobilized peptides showed that they bound C4BP with high specificity and inhibition experiments indicated that different peptides bound to the same site in C4BP. Different C4BP-binding peptides did not exhibit any immunological cross-reactivity, but structural analysis suggested that they have similar folds. These data show that the HVR of streptococcal M protein can exhibit extreme variability in sequence and immunological properties while retaining a highly specific ligand-binding function.

摘要

微生物表面蛋白的抗原变异似乎是一个自相矛盾的现象,因为可变区必须保留重要功能,同时又要表现出广泛的免疫变异性。我们针对一组链球菌M蛋白研究了这个问题,其中大约50个残基的高变区(HVRs)基本上没有残基一致性,但却能结合相同的配体,即人类补体调节蛋白C4b结合蛋白(C4BP)。发现源自不同HVRs的合成肽保留了结合C4BP的能力,这意味着HVR对应于一个可分离研究的独特配体结合结构域。这一发现使得能够直接表征分离的HVRs的配体结合特性,并允许在不存在M蛋白保守部分的情况下比较不同的HVRs。用人血清在固定化肽上进行亲和层析表明,它们以高特异性结合C4BP,抑制实验表明不同的肽结合到C4BP的同一位点。不同的C4BP结合肽没有表现出任何免疫交叉反应,但结构分析表明它们具有相似的折叠。这些数据表明,链球菌M蛋白的HVR在序列和免疫特性上可以表现出极端的变异性,同时保留高度特异性的配体结合功能。

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