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人补体丝氨酸蛋白酶C1r的激活通过一种Ca(2+)依赖性分子内调控被下调,这种调控在C1复合物中通过C1q传递的信号被释放。

Activation of human complement serine-proteinase C1r is down-regulated by a Ca(2+)-dependent intramolecular control that is released in the C1 complex through a signal transmitted by C1q.

作者信息

Thielens N M, Illy C, Bally I M, Arlaud G J

机构信息

Institut de Biologie Structurale, Laboratoire d'Enzymologie Moléculaire, Grenoble, France.

出版信息

Biochem J. 1994 Jul 15;301 ( Pt 2)(Pt 2):509-16. doi: 10.1042/bj3010509.

Abstract

The activation of human C1, a Ca(2+)-dependent complex proteinase comprising a non-enzymic protein, C1q, and two serine proteinases, C1r and C1s, is based primarily on the intrinsic property of C1r to autoactivate. The aim of the present study was to investigate the mechanisms involved in the regulation of C1r autoactivation, with particular attention to the role of Ca2+ ions. Spontaneous activation of proenzyme C1r was observed upon incubation in the presence of EDTA, whereas Ca2+ ions reduced markedly the activation process. Several lines of evidence indicated that Ca2+ inhibited the intramolecular activation reaction but had little or no effect on the intermolecular activation reaction. C1q caused partial release of this inhibitory effect of Ca2+. Complete stabilization of C1r in its proenzyme form was obtained upon incorporation within the Ca(2+)-dependent C1s-C1r-C1r-C1s tetramer, and a comparable effect was observed when C1s was replaced by its Ca(2+)-binding alpha-fragment. Both tetramers, C1s-C1r-C1r-C1s and C1s alpha-C1r-C1r-C1s alpha, readily associated with C1q to form 16.0 S and 14.7 S complexes respectively in which C1r fully recovered its activation potential. Both complexes showed indistinguishable activation kinetics, indicating that the gamma B catalytic region of C1s plays no role in the mechanism that triggers C1r activation in C1. The collagen-like fragments of C1q retained the ability to bind to C1s-C1r-C1r-C1s, but, in contrast with intact C1q, failed to induce C1r activation in the resulting complex at temperatures above 25 degrees C. On the basis of these observations it is proposed that activation of the serine-proteinase domain of C1r is controlled by a Ca(2+)-dependent intramolecular mechanism involving the Ca(2+)-binding alpha-region, and that this control is released in C1 by a signal originating in C1q and transmitted through the C1q/C1r interface.

摘要

人C1是一种依赖Ca(2+)的复合蛋白酶,由非酶蛋白C1q和两种丝氨酸蛋白酶C1r及C1s组成,其激活主要基于C1r自身激活的内在特性。本研究的目的是探究参与C1r自身激活调控的机制,特别关注Ca2+离子的作用。在EDTA存在下孵育时,观察到酶原C1r的自发激活,而Ca2+离子显著降低了激活过程。多条证据表明,Ca2+抑制分子内激活反应,但对分子间激活反应几乎没有影响。C1q部分解除了Ca2+的这种抑制作用。当C1r整合到依赖Ca(2+)的C1s-C1r-C1r-C1s四聚体中时,其酶原形式得到完全稳定,当C1s被其Ca(2+)结合α片段取代时也观察到类似效果。两种四聚体C1s-C1r-C1r-C1s和C1sα-C1r-C1r-C1sα都能与C1q迅速结合,分别形成16.0 S和14.7 S复合物,其中C1r完全恢复其激活潜能。两种复合物表现出难以区分的激活动力学,表明C1s的γB催化区域在触发C1中C1r激活的机制中不起作用。C1q的胶原样片段保留了与C1s-C1r-C1r-C1s结合的能力,但与完整的C1q不同,在25℃以上温度下,它不能在形成的复合物中诱导C1r激活。基于这些观察结果,提出C1r丝氨酸蛋白酶结构域的激活受一种依赖Ca(2+)的分子内机制控制,该机制涉及Ca(2+)结合α区域,并且这种控制在C1中通过源自C1q并通过C1q/C1r界面传递的信号而解除。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f82/1137110/332ef9e0359c/biochemj00083-0196-a.jpg

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