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C反应蛋白通过C1q的胶原样区域进行结合和补体激活,以及抗C反应蛋白和C1q单克隆抗体对这些反应的抑制。

Binding and complement activation by C-reactive protein via the collagen-like region of C1q and inhibition of these reactions by monoclonal antibodies to C-reactive protein and C1q.

作者信息

Jiang H X, Siegel J N, Gewurz H

机构信息

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

出版信息

J Immunol. 1991 Apr 1;146(7):2324-30.

PMID:2005402
Abstract

Ligand-complexed C-reactive protein (CRP), like aggregated or complexed IgG, can react with C1q and activate the classical C pathway. Whereas IgG is known to bind to the globular region and not to the collagen-like region (CLR) of C1q, the site of interaction of C1q with CRP has not been defined. CRP-trimers were prepared by cross-linking and found to bind to C1q and to activate the C system. Heat-aggregated IgG (Agg-IgG) did not block the binding of CRP-trimers to C1q, nor did CRP-trimers block binding of Agg-IgG to C1q, suggesting that CRP and IgG bind at different sites. ELISA and Western blot analysis showed that CRP-trimers bound to the CLR, whereas Agg-IgG bound only to the globular region; similarly, anti-CLR mAb inhibited binding of CRP-trimers to C1q whereas anti-globular region mAb did not. Reactivity with CRP-trimers as well as with Agg-IgG was retained after reduction/alkylation and SDS treatment of C1q. A group of 22 anti-CRP mAb directed against at least six distinct native-CRP epitopes and eight distinct neo-CRP epitopes was tested for ability to inhibit the CRP-CLR interaction; one mAb, anti-native CRP mAb 8D8, with strong inhibitory activity was identified. Fab' of 8D8 blocked binding of CRP-trimers to intact C1q as well as CLR, and also inhibited CRP (CRP-trimers and CRP-protamine complexes) induced C activation, but had no effect on C1q binding or C activation by Agg-IgG. These results indicate that a conformation-determined region on CRP binds to a sequence-determined region on the CLR of C1q in an interaction which leads to C activation. Anti-CRP and anti-C1q mAb that specifically inhibit this interaction are described.

摘要

配体复合的C反应蛋白(CRP),如同聚集或复合的IgG一样,能够与C1q反应并激活经典补体途径。虽然已知IgG结合到C1q的球状区域而非胶原样区域(CLR),但C1q与CRP的相互作用位点尚未明确。通过交联制备了CRP三聚体,发现其能与C1q结合并激活补体系统。热聚集的IgG(Agg-IgG)不阻断CRP三聚体与C1q的结合,CRP三聚体也不阻断Agg-IgG与C1q的结合,这表明CRP和IgG在不同位点结合。ELISA和蛋白质印迹分析显示,CRP三聚体结合到CLR,而Agg-IgG仅结合到球状区域;同样,抗CLR单克隆抗体抑制CRP三聚体与C1q的结合,而抗球状区域单克隆抗体则无此作用。在对C1q进行还原/烷基化和SDS处理后,其与CRP三聚体以及Agg-IgG的反应性得以保留。测试了一组针对至少六个不同天然CRP表位和八个不同新CRP表位的22种抗CRP单克隆抗体抑制CRP-CLR相互作用的能力;鉴定出一种具有强抑制活性的单克隆抗体,即抗天然CRP单克隆抗体8D8。8D8的Fab'阻断CRP三聚体与完整C1q以及CLR的结合,还抑制CRP(CRP三聚体和CRP-鱼精蛋白复合物)诱导的补体激活,但对Agg-IgG的C1q结合或补体激活无影响。这些结果表明,CRP上一个由构象决定的区域与C1q的CLR上一个由序列决定的区域结合,这种相互作用导致补体激活。描述了特异性抑制这种相互作用的抗CRP和抗C1q单克隆抗体。

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