Kojouharova Mihaela S, Gadjeva Mihaela G, Tsacheva Ivanka G, Zlatarova Aleksandra, Roumenina Liubka T, Tchorbadjieva Magdalena I, Atanasov Boris P, Waters Patrick, Urban Britta C, Sim Robert B, Reid Kenneth B M, Kishore Uday
Department of Biochemistry, Sofia University, St. Kliment Ohridski, Sofia, Bulgaria.
J Immunol. 2004 Apr 1;172(7):4351-8. doi: 10.4049/jimmunol.172.7.4351.
The first step in the activation of the classical complement pathway by immune complexes involves the binding of the globular domain (gC1q) of C1q to the Fc regions of aggregated IgG or IgM. Each gC1q domain is a heterotrimer of the C-terminal halves of one A (ghA), one B (ghB), and one C (ghC) chain. Our recent studies have suggested a modular organization of gC1q, consistent with the view that ghA, ghB, and ghC are functionally autonomous modules and have distinct and differential ligand-binding properties. Although C1q binding sites on IgG have been previously identified, the complementary interacting sites on the gC1q domain have not been precisely defined. The availability of the recombinant constructs expressing ghA, ghB, and ghC has allowed us, for the first time, to engineer single-residue substitution mutations and identify residues on the gC1q domain, which are involved in the interaction between C1q and IgG. Because C1q is a charge pattern recognition molecule, we have sequentially targeted arginine and histidine residues in each chain. Consistent with previous chemical modification studies and the recent crystal structure of gC1q, our results support a central role for arginine and histidine residues, especially Arg(114) and Arg(129) of the ghB module, in the C1q-IgG interaction.
免疫复合物激活经典补体途径的第一步涉及C1q的球状结构域(gC1q)与聚集的IgG或IgM的Fc区域结合。每个gC1q结构域是一条A链(ghA)、一条B链(ghB)和一条C链(ghC)C端半段组成的异源三聚体。我们最近的研究表明gC1q具有模块化结构,这与ghA、ghB和ghC是功能自主模块且具有不同配体结合特性的观点一致。尽管之前已鉴定出IgG上的C1q结合位点,但gC1q结构域上的互补相互作用位点尚未精确界定。表达ghA、ghB和ghC的重组构建体的可得性使我们首次能够设计单残基替代突变,并确定gC1q结构域上参与C1q与IgG相互作用的残基。由于C1q是一种电荷模式识别分子,我们依次针对每条链中的精氨酸和组氨酸残基。与之前的化学修饰研究以及最近gC1q的晶体结构一致,我们的结果支持精氨酸和组氨酸残基,尤其是ghB模块中的Arg(114)和Arg(129),在C1q-IgG相互作用中起核心作用。