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Alternative pathway of complement: recruitment of precursor properdin by the labile C3/C5 convertase and the potentiation of the pathway

机译:补体的替代途径:不稳定的C3 / C5转化酶募集前体备解素和途径的增强

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摘要

In this study the physiological role of properdin and the differential subunit composition of the solid phase enzymes of the pathway have been explored. Cell-bound C3 and C5 convertase differ in their C3b requirement. Apparently one molecule of C3b is sufficient to allow formation of C3 convertase (C3b,B), whereas two or more are required for generation of C5 convertase (C3bn,B). This conclusion was drawn from results indicating the critical role of the spacial distribution of C3b molecules on the cell surface in enzyme formation. While the C3/C5 convertase is fully capable of acting on C5 and thereby initiating the assembly of the cytolytic membrane attack complex, it is exceedingly labile and vulnerable to destruction by the C3b inactivator. It is the apparent role of properdin to confer a degree of stability upon the labile enzyme and to protect its C3 convertase function against enzymatic destruction. To achieve these effects, precursor properdin (pre-P) is recruited in a binding-activation reaction by the labile C3/C5 convertase. Multiple C3b molecules appear to be needed for the formation of properdin-activating principle. Three modes of regulation have been described, which involve spontaneous dissociation enzymatic degradation by C3b inactivator and disassembly by beta1H. The functional differences of pre-P and activated properdin (P) were delineated, pre-P displaying a weak affinity for C3b and P the capacity of strong interaction, P generating a soluble C3 convertase in serum and pre-P being unable to do so. Because of the profound differences between native pre-P and the laboratory product P, the question was raised as to whether soluble P represents an unphysiological form of the protein. On the basis of this and other studies, the conclusion was reached that in vitro properdin recruitment constitutes the terminal event of the properdin pathway, and that properdin augments the function of C3/C5 convertase without changing its substrate specificity.
机译:在这项研究中,已探究了备解素的生理作用和该途径的固相酶的差异亚基组成。细胞结合的C3和C5转化酶对C3b的需求不同。显然,一个C3b分子足以形成C3转化酶(C3b,B),而生成C5转化酶(C3bn,B)需要两个或更多。该结论是从表明酶表面上C3b分子在细胞表面空间分布的关键作用得出的。尽管C3 / C5转化酶完全能够作用于C5,从而启动细胞溶解膜攻击复合物的组装,但它极不稳定,并且容易被C3b灭活剂破坏。备解素的明显作用是赋予不稳定酶一定程度的稳定性,并保护其C3转化酶功能免受酶破坏。为了实现这些效果,不稳定的C3 / C5转化酶在结合激活反应中募集了前体备解素(pre-P)。形成备解素激活原理似乎需要多个C3b分子。已描述了三种调节模式,包括C3b灭活剂的自发解离酶促降解和beta1H的解体。描绘了pre-P和活化的备解素(P)的功能差异,pre-P对C3b的亲和力较弱,并且P具有很强的相互作用能力,P在血清中生成了可溶性C3转化酶,而pre-P无法做到这一点。由于天然pre-P与实验室产品P之间的巨大差异,有人提出了一个问题,即可溶性P是否代表蛋白质的非生理形式。在此研究和其他研究的基础上,得出的结论是,体外备解素募集构成了备解素途径的终端事件,并且备解素增强了C3 / C5转化酶的功能,而没有改变其底物特异性。

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