Breakdown of C3 covalently bound to F(ab')2 immune complexes after complement activation by the alternative pathway.

L C Antón, J M Alcolea, G Marqués, P Sánchez-Corral, F Vivanco
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引用次数: 10

Abstract

The activation and subsequent degradation of C3 covalently bound to immune complexes (IC) has been studied by using immune aggregates antiovalbumin-125I-F(ab')2-ovalbumin or 125I-C3 in the presence of serum. Kinetic experiments were performed in order to establish the physiological sequence of C3 degradation as a function of time. The results indicated: The interaction C3-IC, as analyzed in SDS-PAGE, results in bands of high molecular weight corresponding to C3 alpha-65-Fd and C3 alpha-41-Fd covalent complexes. In the first 7 min only C3 alpha-65-Fd complexes were detected. From 7 to 15 min a progressive increase in the C3 alpha-41-Fd complexes occurs. After this time the ratio C3 alpha-65-Fd/C3 alpha-41-Fd was kept constant for at least 45 min. Hence, C3b covalently bound to F(ab')2 IC is degraded in serum much faster than when it is bound to IgG IC. The spatial distribution of the Fab arms in the IC appears to be a critical feature in providing a protective environment for C3b. The orientation of the Fab arms was dependent on the presence of the Fc regions.

补体激活后C3共价结合F(ab’)2免疫复合物的分解
通过使用血清中存在的抗卵白蛋白- 125i - f (ab')2-卵白蛋白或125I-C3免疫聚集体,研究了C3共价结合免疫复合物(IC)的激活和随后的降解。为了建立C3降解随时间变化的生理序列,进行了动力学实验。结果表明:通过SDS-PAGE分析,C3- ic相互作用产生了C3 α -65- fd和C3 α -41- fd共价物对应的高分子量带。在前7分钟,仅检测到C3 α -65- fd复合物。从7到15分钟,C3 α -41- fd复合物逐渐增加。在此之后,C3 α -65- fd /C3 α -41- fd的比值保持不变至少45分钟。因此,与F(ab')2 IC共价结合的C3b在血清中的降解速度要比与IgG IC结合的C3b快得多。IC中Fab臂的空间分布似乎是为C3b提供保护环境的关键特征。Fab臂的取向取决于Fc区的存在。
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