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C反应蛋白结合并激活补体至人C1q A链的14 - 26位和76 - 92位残基所通过的位点定位。

Localization of sites through which C-reactive protein binds and activates complement to residues 14-26 and 76-92 of the human C1q A chain.

作者信息

Jiang H, Robey F A, Gewurz H

机构信息

Department of Immunology/Microbiology, Rush Medical College, Chicago, Illinois 60612.

出版信息

J Exp Med. 1992 May 1;175(5):1373-9. doi: 10.1084/jem.175.5.1373.

Abstract

Studies were initiated to localize the C-reactive protein (CRP) binding site on the collagen-like region (CLR) of C1q. CRP bound preferentially to the A chain of reduced C1q, in contrast to aggregated immunoglobulin G (Agg-IgG), which reacted preferentially with the C chain. A group of C1q A chain peptides, including peptides identical to residues 81-97, 76-92, and 14-26, respectively, were synthesized from predicted binding regions. Peptide 76-92 contained two proximal lysine groups, and peptide 14-26 contained four proximal arginine groups. CRP-trimers and CRP-ligand complexes did not bind to immobilized peptide 81-97, but bound avidly to immobilized peptides 76-92 and 14-26. Agg-IgG did not bind to any of the peptides. Peptide 76-92 partially, and peptide 14-26 completely, inhibited binding of CRP to intact C1q. Peptide 14-26 also blocked C consumption initiated by CRP, but not by IgG. Replacement of the two prolines with alanines, or scrambling the order of the amino acids, resulted in loss of ability of peptide 14-26 to inhibit C1q binding and C activation by CRP, indicating a sequence specificity, and not a charge specificity alone, as the basis for the inhibitory activity of the peptide. Similar investigations with scrambled peptides showed a sequence specificity for the effects of peptide 76-92 as well. DNA and heparin inhibited binding of CRP trimers to intact C1q, as well as to each peptide 14-26 and 76-92, suggesting involvement of these regions in C1q-CLR binding reactions generally. Collectively, these data identify two cationic regions within residues 14-26 and 76-92 of the C1q A chain CLR as sites through which CRP binds and activates the classical C pathway, and suggest that these residues represent significant regions for C1q CLR binding reactions generally. To our knowledge, this represents the first delineation of sites on C1q through which binding and activation of the classical C pathway can occur.

摘要

开展了多项研究来定位C1q胶原样区域(CLR)上的C反应蛋白(CRP)结合位点。与聚集免疫球蛋白G(Agg-IgG)优先与C链反应不同,CRP优先与还原型C1q的A链结合。从预测的结合区域合成了一组C1q A链肽,包括分别与81 - 97、76 - 92和14 - 26位残基相同的肽段。肽段76 - 92含有两个相邻的赖氨酸基团,肽段14 - 26含有四个相邻的精氨酸基团。CRP三聚体和CRP - 配体复合物不与固定化的肽段81 - 97结合,但能强烈结合固定化的肽段76 - 92和14 - 26。Agg-IgG不与任何一种肽段结合。肽段76 - 92部分抑制,肽段14 - 26完全抑制CRP与完整C1q的结合。肽段{14 - 26}还能阻断由CRP引发的补体C消耗,但不能阻断由IgG引发的补体C消耗。将肽段14 - 26中的两个脯氨酸替换为丙氨酸,或者打乱氨基酸顺序,都会导致该肽段失去抑制C1q结合和CRP激活补体C的能力,这表明其抑制活性的基础是序列特异性,而非单纯的电荷特异性。对打乱顺序的肽段进行的类似研究也表明肽段76 - 92的作用具有序列特异性。DNA和肝素抑制CRP三聚体与完整C1q的结合,以及与肽段14 - 26和76 - 92的结合,这表明这些区域通常参与C1q - CLR结合反应。总体而言,这些数据确定了C1q A链CLR的14 - 26位和76 - 92位残基内的两个阳离子区域是CRP结合并激活经典补体途径的位点,并表明这些残基通常代表C1q CLR结合反应的重要区域。据我们所知,这是首次对C1q上可发生经典补体途径结合和激活的位点进行的描述。

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