首页> 外文期刊>Molecular Immunology >Revisiting the mechanism of the autoactivation of the complement protease C1r in the C1 complex: Structure of the active catalytic region of C1r.
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Revisiting the mechanism of the autoactivation of the complement protease C1r in the C1 complex: Structure of the active catalytic region of C1r.

机译:复习C1复合物中补体蛋白酶C1r自激活的机制:C1r活性催化区的结构。

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摘要

C1r is a modular serine protease which is the autoactivating component of the C1 complex of the classical pathway of the complement system. We have determined the first crystal structure of the entire active catalytic region of human C1r. This fragment contains the C-terminal serine protease (SP) domain and the preceding two complement control protein (CCP) modules. The activated CCP1-CCP2-SP fragment makes up a dimer in a head-to-tail fashion similarly to the previously characterized zymogen. The present structure shows an increased number of stabilizing interactions. Moreover, in the crystal lattice there is an enzyme-product relationship between the C1r molecules of neighboring dimers. This enzyme-product complex exhibits the crucial S1-P1 salt bridge between Asp631 and Arg446 residues, and intermolecular interaction between the CCP2 module and the SP domain. Based on these novel structural information we propose a new split-and-reassembly model for the autoactivation of the C1r. This model is consistent with experimental results that have not been explained adequately by previous models. It allows autoactivation of C1r without large-scale, directed movement of C1q arms. The model is concordant with the stability of the C1 complex during activation of the next complement components.
机译:C1r是一种模块化的丝氨酸蛋白酶,是补体系统经典途径的C1复合物的自激活成分。我们已经确定了人类C1r整个活性催化区域的第一个晶体结构。该片段包含C端丝氨酸蛋白酶(SP)域和前面的两个补体控制蛋白(CCP)模块。与先前表征的酶原相似,活化的CCP1-CCP2-SP片段从头到尾的方式组成一个二聚体。本结构显示稳定相互作用的数量增加。此外,在晶格中,相邻二聚体的Clr分子之间存在酶-产物关系。这种酶-产物复合物在Asp631和Arg446残基之间显示出至关重要的S1-P1盐桥,以及CCP2模块和SP结构域之间的分子间相互作用。基于这些新颖的结构信息,我们提出了一种用于C1r自动激活的新的拆分和重组模型。该模型与先前模型未充分解释的实验结果一致。它允许C1r的自动激活,而无需C1q臂的大规模定向移动。该模型与下一个补体成分激活过程中C1复合物的稳定性一致。

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