Pangburn M K, Schreiber R D, Müller-Eberhard H J
J Exp Med. 1981 Sep 1;154(3):856-67. doi: 10.1084/jem.154.3.856.
Activation of the alternative pathway of complement commences with the formation of an initial fluid-phase C3 convertase. Treatment of C3 with the nucleophilic reagent methylamine has previously been shown to result in the cleavage of an intramolecular thioester bond and to induce C3b-like properties, including the ability to form a fluid-phase C3 convertase. This report examines the hypothesis that spontaneous hydrolysis of the thioester generates a derivative of C3 that is responsible for the formation of the initial C3 convertase of the alternative pathway. The rate of spontaneous decay of C3 hemolytic activity in buffer was found to be between 0.2 and 0.4%/h. In the presence of other alternative pathway proteins, the rate of inactivation was 1%/h. The rate of spontaneous inactivation was greatly accelerated by low concentrations of chaotrophic agents such as KSCN or guanidine. Liberation of a sulfhydryl group, not present in native C3, correlated with loss of hemolytic activity, indicating that exposure to chaotropic agents resulted in thioester hydrolysis. Unlike native C3, C3 bearing a single reactive sulfhydryl group was capable of generating fluid-phase C3 convertase with Factors B, D, and P and was cleaved by Factor I (C3b inactivator) in the presence of Factor H (beta 1H). The fragmentation patterns indicated that the C3a domain was covalently associated with the functionally C3b-like C3. Organomercurial agarose was employed for the rapid removal of sulfhydryl-bearing, hemolytically inactive forms of C3 and C3b from native hemolytically active C3.
补体替代途径的激活始于初始液相C3转化酶的形成。先前已表明,用亲核试剂甲胺处理C3会导致分子内硫酯键的断裂,并诱导产生C3b样特性,包括形成液相C3转化酶的能力。本报告检验了这样一种假说,即硫酯的自发水解产生了一种C3衍生物,它负责替代途径初始C3转化酶的形成。发现缓冲液中C3溶血活性的自发衰减速率在0.2%至0.4%/小时之间。在存在其他替代途径蛋白的情况下,失活速率为1%/小时。低浓度的离液剂如KSCN或胍会大大加速自发失活速率。一个在天然C3中不存在的巯基的释放与溶血活性的丧失相关,表明暴露于离液剂会导致硫酯水解。与天然C3不同,带有单个反应性巯基的C3能够与因子B、D和P一起产生液相C3转化酶,并且在因子H(β1H)存在的情况下被因子I(C3b灭活剂)裂解。片段化模式表明C3a结构域与功能上类似C3b的C3共价结合。使用有机汞琼脂糖从天然具有溶血活性的C3中快速去除带有巯基、无溶血活性的C3和C3b形式。