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Binding of model soluble immune complexes to modified C-reactive protein.

机译:模型可溶性免疫复合物与修饰的C反应蛋白的结合。

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We have identified a binding interaction between a modified form of C-reactive protein (mCRP) and model immune complexes. We have characterized these interactions in terms of their relative affinity, specificity, pH dependence, and recognition site on mCRP. First, binding isotherms were generated for the reaction of immobilized mCRP with heat-aggregated IgG (HAG) which gave an estimate for the value of the dissociation constant, Kd, of 1.6 nM. Second, competitive binding assays were performed using immobilized HAG to determine the relative affinity (IC50) for the interaction between HAG or monomeric IgG and mCRP in the fluid phase. While the binding of HAG to mCRP occurred with high affinity (IC50=0.72 nM), the binding of monomeric IgG to mCRP occurred with 2000-fold lower affinity (IC501.66 muM). Third, immune complex binding to immobilized mCRP was studied using defined ratios of horseradish peroxidase and rabbit anti-peroxidase Ab. The binding of these complexes to mCRP was strongly pH dependent, with a maximum at pH 5.5. At this optimal pH, preformed peroxidase-antiperoxidase immune complexes (approximately 2:3 Ab:Ag molar ratio) were shown to bind immobilized mCRP with a Kd of 111 nM. Fourth, using mCRP-specific mAbs, HAG and peroxidase- antiperoxidase binding sites were localized to CRP sequences to 130 to 138 and 200 to 206. Since inflammatory processes often cause microenvironments to become acidic, and since mCRP selectively binds immune complexes at acidic pH, we propose that mCRP mediates the specific binding of immune complexes in vivo and potentiates effector reactions for immune complex removal.
机译:我们已经确定了C反应蛋白(mCRP)的修饰形式和模型免疫复合物之间的结合相互作用。我们已经根据它们的相对亲和力,特异性,pH依赖性和在mCRP上的识别位点来表征了这些相互作用。首先,为固定化的mCRP与热聚集IgG(HAG)的反应生成了结合等温线,从而得出解离常数Kd的估计值为1.6 nM。第二,使用固定化的HAG进行竞争性结合测定,以确定HAG或单体IgG与mCRP在液相中相互作用的相对亲和力(IC50)。 HAG与mCRP的结合具有高亲和力(IC50 = 0.72 nM),而单体IgG与mCRP的结合却具有> 2000倍的低亲和力(IC50> 1.66μM)。第三,使用辣根过氧化物酶和兔抗过氧化物酶抗体的确定比例研究了免疫复合物与固定化mCRP的结合。这些复合物与mCRP的结合强烈依赖于pH,在pH 5.5时最大。在此最佳pH值下,预制的过氧化物酶-抗过氧化物酶免疫复合物(约2:3 Ab:Ag摩尔比)显示出结合的固定化mCRP的Kd为111 nM。第四,使用mCRP特异的单克隆抗体,HAG和过氧化物酶-抗过氧化物酶的结合位点位于CRP序列的130-138和200-206。我们建议,mCRP介导体内免疫复合物的特异性结合,并增强效应反应以清除免疫复合物。

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