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补体蛋白C1q球状头部的晶体结构为其多样的识别特性提供了基础。

The crystal structure of the globular head of complement protein C1q provides a basis for its versatile recognition properties.

作者信息

Gaboriaud Christine, Juanhuix Jordi, Gruez Arnaud, Lacroix Monique, Darnault Claudine, Pignol David, Verger Denis, Fontecilla-Camps Juan C, Arlaud Gérard J

机构信息

Laboratoire de Cristallographie et Cristallogéncse des Protéines, Institut de Biologie Structurale Jean-Pierre Ebel, Commissariat à l'Energie Atomique (CEA)-CNRS-Université Joseph Fourier, 41 rue Jules Horowitz, 38027 Grenoble Cedex 1, France.

出版信息

J Biol Chem. 2003 Nov 21;278(47):46974-82. doi: 10.1074/jbc.M307764200. Epub 2003 Sep 5.

Abstract

C1q is a versatile recognition protein that binds to an amazing variety of immune and non-immune ligands and triggers activation of the classical pathway of complement. The crystal structure of the C1q globular domain responsible for its recognition properties has now been solved and refined to 1.9 A of resolution. The structure reveals a compact, almost spherical heterotrimeric assembly held together mainly by non-polar interactions, with a Ca2+ ion bound at the top. The heterotrimeric assembly of the C1q globular domain appears to be a key factor of the versatile recognition properties of this protein. Plausible three-dimensional models of the C1q globular domain in complex with two of its physiological ligands, C-reactive protein and IgG, are proposed, highlighting two of the possible recognition modes of C1q. The C1q/human IgG1 model suggests a critical role for the hinge region of IgG and for the relative orientation of its Fab domain in C1q binding.

摘要

C1q是一种多功能识别蛋白,它能与多种免疫和非免疫配体结合,并触发补体经典途径的激活。负责其识别特性的C1q球状结构域的晶体结构现已解析并精修至1.9埃分辨率。该结构揭示了一个紧凑的、近乎球形的异源三聚体组装体,主要通过非极性相互作用结合在一起,顶部结合有一个Ca2+离子。C1q球状结构域的异源三聚体组装似乎是该蛋白多功能识别特性的关键因素。提出了C1q球状结构域与其两种生理配体C反应蛋白和IgG形成复合物的合理三维模型,突出了C1q的两种可能识别模式。C1q/人IgG1模型表明IgG的铰链区及其Fab结构域在与C1q结合时的相对取向起着关键作用。

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