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形成替代途径C5转化酶所需的C3。

C3 requirements for formation of alternative pathway C5 convertase.

作者信息

Daha M R, Fearon D T, Austen K F

出版信息

J Immunol. 1976 Aug;117(2):630-4.

PMID:950465
Abstract

Although alternative pathway C3 and C5 convertases both have active proteolytic sites dependent on the same protein, Bb, the quantitative requirements for the expression of these activities are sufficiently different to permit their delineation in terms of B input an cell-bound C3b. That the labile component of each active site is Bb was established by their parallel decay rates, regeneration of the original specificities with B in the presence of D, and stabilization of each convertase by C3NeF. The evidence that the spatial relationships of Bb and C3b on the cell surface for C3 and C5 convertase activities are distinct is based not only upon the decay and regeneration of each original convertase but more so upon their interconversion. C3 convertase is converted to C5 convertase by interaction with additional C3 whereas C5 convertase reverts to a C3 convertase by treatment with C3 INA. The capacity of C3 INA treatment to abolish C5 convertase sites without affecting C3 convertase sites indicates the existence of two functional species of C3b, one of which is protected in the C3bBb complex whereas the other is exposed.

摘要

虽然替代途径C3和C5转化酶都有依赖于同一蛋白质Bb的活性蛋白水解位点,但这些活性表达的定量要求差异足够大,以至于可以根据B输入和细胞结合的C3b来区分它们。每个活性位点的不稳定成分是Bb,这是通过它们平行的衰变率、在D存在下用B使原始特异性再生以及用C3NeF使每种转化酶稳定来确定的。关于细胞表面上Bb和C3b对于C3和C5转化酶活性的空间关系是不同的证据,不仅基于每种原始转化酶的衰变和再生,更基于它们的相互转化。C3转化酶通过与额外的C3相互作用转化为C5转化酶,而C5转化酶通过用C3INA处理恢复为C3转化酶。C3INA处理消除C5转化酶位点而不影响C3转化酶位点的能力表明存在两种功能性的C3b,其中一种在C3bBb复合物中受到保护,而另一种是暴露的。

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