Hosoi S, Circolo A, Borsos T
J Immunol. 1987 Sep 1;139(5):1602-8.
The first component of human complement was separated from C1-INH by sucrose linear gradient ultracentrifugation. Activation of C1 was studied in the absence and presence of immune complexes; activation was monitored by SDS-PAGE and Western blot. When the partially purified native C1 preparation was incubated at 37 degrees C without immune complexes, activated C1s appeared after 30 min in the case of eightfold dilution with respect to the original serum, and after 45 min with 32-fold dilution. Kinetics of appearance of activated C1r was the same as that of activated C1s. From the following results, we concluded that spontaneous activation may be partially due to proteolytic enzymes contaminating the preparation: 1) a nonspecific protease inhibitor, PMSF, completely inhibited spontaneous activation but did not inhibit the activation of C1 by immune complexes; 2) alpha 2-macroglobulin partially inhibited spontaneous activation, and 3) although spontaneous activation in the absence of PMSF was relatively slow, activated C1 accelerated spontaneous activation that was completely blocked by C1-INH. In contrast to spontaneous activation, the partially purified native C1 was rapidly activated by immune complexes: within 5 min almost all C1 was activated by rabbit IgG anti-human IgM-human IgM complexes. These results support conclusions derived from activation studies when using native C1 and hemolytic assays, and do not support those derived from the activation studies with reconstituted C1 and SDS-PAGE analysis. We suggest that the contradictions can be resolved if one assumes that C1 activation can be both an intra- and intermolecular process; which process dominates is determined by the state of C1 and by experimental conditions.
通过蔗糖线性梯度超速离心从C1抑制物中分离出人类补体的第一个成分。在有无免疫复合物的情况下研究C1的激活;通过SDS-PAGE和蛋白质印迹监测激活情况。当将部分纯化的天然C1制剂在37℃下无免疫复合物孵育时,对于相对于原始血清八倍稀释的情况,30分钟后出现活化的C1s,而32倍稀释时45分钟后出现。活化的C1r出现的动力学与活化的C1s相同。从以下结果我们得出结论,自发激活可能部分归因于制剂中污染的蛋白水解酶:1)一种非特异性蛋白酶抑制剂苯甲基磺酰氟(PMSF)完全抑制自发激活,但不抑制免疫复合物对C1的激活;2)α2-巨球蛋白部分抑制自发激活,以及3)尽管在没有PMSF的情况下自发激活相对较慢,但活化的C1加速自发激活,而这被C1抑制物完全阻断。与自发激活相反,部分纯化的天然C1被免疫复合物快速激活:在5分钟内,几乎所有C1被兔抗人IgM-人IgM复合物激活。这些结果支持使用天然C1和溶血试验进行激活研究得出的结论,而不支持使用重组C1和SDS-PAGE分析进行激活研究得出的结论。我们认为,如果假设C1激活可以是分子内和分子间过程,那么这些矛盾可以得到解决;哪个过程占主导由C1的状态和实验条件决定。