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由肾炎因子稳定的经典和替代补体途径C3转化酶免受人类C3b受体介导的衰变作用。

Protection of the classical and alternative complement pathway C3 convertases, stabilized by nephritic factors, from decay by the human C3b receptor.

作者信息

Fischer E, Kazatchkine M D, Mecarelli-Halbwachs L

出版信息

Eur J Immunol. 1984 Dec;14(12):1111-4. doi: 10.1002/eji.1830141209.

DOI:10.1002/eji.1830141209
PMID:6240408
Abstract

Formation and function of the classical (C4b,2a) and alternative (C3b,Bb) complement pathway C3 convertases are regulated by the intrinsic lability of the enzymes, extrinsic decay by C4bp and H, cleavage of C4b and C3b by I, and by the inhibitory action of the C3b receptor molecule (CR1). Binding of C4 nephritic factor (C4Nef) to C4b and of C3 nephritic factor (C3Nef) to C3b stabilizes the C3 convertases and bypasses inactivation by C4bp, H and/or I. In the present study, binding of C4Nef to the classical C3 convertase was found to prevent decay of C4b,2a by inputs of CR1 that were at least 15 times the amount of CR1 which inactivated 50% unstabilized classical pathway C3 convertase sites in 2.5 min. CR1 could however inhibit lysis of C4b,2a(C4Nef)-bearing cells in a dose-dependent manner. The latter inhibitory effect was directed at the interaction of C5 with the C5 convertase, most likely at C5 binding to cell-bound C3b. In an analogous manner to C4Nef in the classical pathway, stabilization of alternative pathway C3b,Bb convertase sites by C3Nef resulted in a relative protection of C3 convertase sites from decay by CR1. Thus, C4Nef and C3Nef can bypass all mechanisms susceptible to regulate function of the classical and alternative pathway C3 convertases. Because CR1 is essential for degradation of C3b bound to immune complexes in whole blood, stabilization of C4b,2a and C3b,Bb by C4Nef and C3Nef may alter in vivo processing of immune complexes in patients with nephritic factors.

摘要

经典(C4b,2a)和旁路(C3b,Bb)补体途径C3转化酶的形成和功能受酶的固有不稳定性、C4bp和H的外在衰变、I对C4b和C3b的裂解以及C3b受体分子(CR1)的抑制作用调节。C4肾炎因子(C4Nef)与C4b结合以及C3肾炎因子(C3Nef)与C3b结合可使C3转化酶稳定,并绕过C4bp、H和/或I的失活作用。在本研究中,发现C4Nef与经典C3转化酶结合可通过输入CR1来防止C4b,2a衰变,该CR1的量至少是在2.5分钟内使50%未稳定的经典途径C3转化酶位点失活的CR1量的15倍。然而,CR1可以剂量依赖性方式抑制携带C4b,2a(C4Nef)的细胞的裂解。后一种抑制作用针对C5与C5转化酶的相互作用,最有可能是针对C5与细胞结合的C3b的结合。与经典途径中的C4Nef类似,C3Nef使旁路途径C3b,Bb转化酶位点稳定,导致C3转化酶位点相对免受CR1的衰变影响。因此,C4Nef和C3Nef可以绕过所有易调节经典和旁路途径C3转化酶功能的机制。由于CR1对于全血中与免疫复合物结合的C3b的降解至关重要,C4Nef和C3Nef对C4b,2a和C3b,Bb的稳定作用可能会改变患有肾炎因子患者体内免疫复合物的处理过程。

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Protection of the classical and alternative complement pathway C3 convertases, stabilized by nephritic factors, from decay by the human C3b receptor.由肾炎因子稳定的经典和替代补体途径C3转化酶免受人类C3b受体介导的衰变作用。
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