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IgM多反应性天然自身抗体的结构与亲和力研究

Structural and affinity studies of IgM polyreactive natural autoantibodies.

作者信息

Diaw L, Magnac C, Pritsch O, Buckle M, Alzari P M, Dighiero G

机构信息

Immunohematology and Immunopathology Unit, Pasteur Institute, Paris, France.

出版信息

J Immunol. 1997 Jan 15;158(2):968-76.

PMID:8993018
Abstract

Natural polyreactive autoantibodies (NAA) are an important component of the normal B cell repertoire. One intriguing characteristic of these Abs is their binding to various dissimilar Ags. It has been generally assumed that these Abs bind the Ags with low affinity, and are encoded by germline genes. We have used surface plasmon resonance to determine binding of avidities, and conducted a structural analysis of five murine monoclonal natural autoantibodies displaying a typical polyreactive binding pattern against cytoskeleton Ags and DNA. We show that 1) all the five Abs bind the different Ags with kinetic constants similar to those observed for immune Abs; 2) they express a restricted set of V(H) and V(L) genes, since the same V(H) gene is expressed by three out of the five, and one particular Vkappa gene was expressed twice. In addition, a single D gene segment was used by three of the five Abs; and 3) they express, in most cases, genes in a close germline configuration. Our amino acid sequence and modeling studies show that the distribution of exposed side chains in the NAA paratopes is close to the general pattern observed in the complementarity-determining regions (CDRs) of variable domains from immune Abs. Although CDR3 regions of the heavy chain have been postulated to play a major role in determining polyreactivity on the basis of recombinatorial experiments, our results failed to show any distinctive particularity of this region in terms of length or charge when compared with classical immune Abs.

摘要

天然多反应性自身抗体(NAA)是正常B细胞库的重要组成部分。这些抗体的一个有趣特征是它们能与多种不同的抗原结合。一般认为这些抗体以低亲和力结合抗原,且由种系基因编码。我们利用表面等离子体共振来确定亲和力的结合情况,并对五种针对细胞骨架抗原和DNA呈现典型多反应性结合模式的小鼠单克隆天然自身抗体进行了结构分析。我们发现:1)所有这五种抗体与不同抗原结合的动力学常数与免疫抗体所观察到的相似;2)它们表达一组有限的重链可变区(V(H))和轻链可变区(V(L))基因,因为五种中有三种表达相同的V(H)基因,且一个特定的Vκ基因表达了两次。此外,五种中有三种使用了单个D基因片段;3)在大多数情况下,它们以接近种系的构型表达基因。我们的氨基酸序列和建模研究表明,NAA互补决定区中暴露侧链的分布与免疫抗体可变区互补决定区(CDR)中观察到的一般模式相近。尽管基于重组实验推测重链的CDR3区在决定多反应性方面起主要作用,但与经典免疫抗体相比,我们的结果未能显示该区域在长度或电荷方面有任何独特的特殊性。

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