Vonderviszt F, Török J, Lakatos S, Kilár F, Závodszky P
Biochem J. 1987 Apr 15;243(2):449-55. doi: 10.1042/bj2430449.
A novel method was developed for the analysis of the interaction of large multivalent ligands with surfaces (matrices) to analyse the binding of complement subcomponent C1q to immune precipitates. Our new evaluation method provides quantitative data characteristic of the C1q-immune-complex interaction and of the structure of the immune complex as well. To reveal the functional role of domain-domain interactions in the Fc part of IgG the binding of C1q to different anti-ovalbumin IgG-ovalbumin immune complexes was studied. Immune-complex precipitates composed of rabbit IgG in which the non-covalent or covalent bonds between the heavy chains had been eliminated were used. Non-covalent bonds were abolished by splitting off the CH3 domains, i.e. by using Facb fragments, and the covalent contact was broken by reduction and alkylation of the single inter-heavy-chain disulphide bond. The quantitative analysis of the binding curves provides a dissociation constant (K) of 200 nM for the interaction between C1q and immune precipitate formed from native IgG. Surprisingly, for immune precipitates composed of Facb fragments or IgG in which the inter-heavy-chain disulphide bond had been selectively reduced and alkylated, stronger binding (K = 30 nM) was observed. In this case, however, changes in the structure of the immune-complex matrix were also detected. These structural changes may account for the strengthening of the C1q-immune-complex interaction, which can be strongly influenced by the flexibility and the binding-site pattern of the immune-complex precipitates. These results suggest that domain-domain interactions in the Fc part of IgG affect the segmental mobility of IgG molecules and the spatial arrangement of the immune-complex matrix rather than the affinity of individual C1q-binding sites on IgG.
开发了一种新方法,用于分析大型多价配体与表面(基质)的相互作用,以分析补体亚成分C1q与免疫沉淀物的结合。我们的新评估方法提供了C1q-免疫复合物相互作用以及免疫复合物结构的定量数据特征。为了揭示IgG Fc部分中结构域-结构域相互作用的功能作用,研究了C1q与不同抗卵清蛋白IgG-卵清蛋白免疫复合物的结合。使用了由兔IgG组成的免疫复合物沉淀物,其中重链之间的非共价键或共价键已被消除。通过去除CH3结构域,即使用Facb片段来消除非共价键,通过还原和烷基化单个重链间二硫键来破坏共价接触。结合曲线的定量分析表明,C1q与天然IgG形成的免疫沉淀物之间相互作用的解离常数(K)为200 nM。令人惊讶的是,对于由Facb片段或重链间二硫键已被选择性还原和烷基化的IgG组成的免疫沉淀物,观察到更强的结合(K = 30 nM)。然而,在这种情况下,也检测到了免疫复合物基质结构的变化。这些结构变化可能解释了C1q-免疫复合物相互作用的增强,这可能受到免疫复合物沉淀物的灵活性和结合位点模式的强烈影响。这些结果表明,IgG Fc部分中的结构域-结构域相互作用影响IgG分子的节段流动性和免疫复合物基质的空间排列,而不是IgG上单个C1q结合位点的亲和力。