Jelezarova E, Vogt A, Lutz H U
Institute of Biochemistry, Swiss Federal Institute of Technology, ETH-Zentrum, CH 8092, Zurich, Switzerland.
Biochem J. 2000 Jul 1;349(Pt 1):217-23. doi: 10.1042/0264-6021:3490217.
Nascent C3b can form ester bonds with various target molecules on the cell surface and in the fluid phase. Previously, we showed that C3b(2)--IgG complexes represent the major covalent product of C3 activation in serum [Lutz, Stammler, Jelezarova, Nater and Späth (1996) Blood 88, 184--193]. In the present report, binding of alternative pathway proteins to purified C3b(2)--IgG complexes was studied in the fluid phase by using biotinylated IgG for C3b(2)--IgG generation and avidin-coated plates to capture complexes. Up to seven moles of properdin 'monomer' bound per mole of C3b(2)--IgG at physiological conditions in the absence of any other complement protein. At low properdin/C3b(2)--IgG ratios bivalent binding was preferred. Neither factor H nor factor B affected properdin binding. On the other hand, properdin strongly stimulated factor B binding. Interactions of all three proteins with C3b(2)--IgG exhibited pH optima. An ionic strength optimum was most pronounced for properdin, while factor B binding was largely independent of the salt concentration. C3b(2)--IgG complexes were powerful precursors of the alternative pathway C3 convertase. In the presence of properdin, C3 convertase generated from C3b(2)--IgG cleaved about sevenfold more C3 than the enzyme generated on C3b. C3b(2)--IgG complexes could therefore maintain the amplification loop of complement longer than free C3b.
新生的C3b可与细胞表面及液相中的各种靶分子形成酯键。此前,我们发现C3b(2)-IgG复合物是血清中C3活化的主要共价产物[Lutz、Stammler、Jelezarova、Nater和Späth(1996年),《血液》88卷,184 - 193页]。在本报告中,通过使用生物素化IgG生成C3b(2)-IgG,并利用抗生物素蛋白包被的平板捕获复合物,在液相中研究了替代途径蛋白与纯化的C3b(2)-IgG复合物的结合情况。在生理条件下且不存在任何其他补体蛋白时,每摩尔C3b(2)-IgG最多可结合7摩尔备解素“单体”。在低备解素/C3b(2)-IgG比例下,二价结合更为常见。H因子和B因子均不影响备解素的结合。另一方面,备解素强烈刺激B因子的结合。这三种蛋白与C3b(2)-IgG的相互作用均表现出最适pH值。备解素的最适离子强度最为明显,而B因子的结合在很大程度上与盐浓度无关。C3b(2)-IgG复合物是替代途径C3转化酶的强大前体。在备解素存在的情况下,由C3b(2)-IgG产生的C3转化酶裂解的C3比由C3b产生的酶多约7倍。因此,C3b(2)-IgG复合物维持补体放大环的时间比游离C3b更长。