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抗体特异性和交叉反应性。

Antibody specificity and promiscuity.

机构信息

Regional Centre for Biotechnology, NCR Biotech Science Cluster, 3rd Milestone, Faridabad 121001, India

International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi 110067, India

出版信息

Biochem J. 2019 Feb 5;476(3):433-447. doi: 10.1042/BCJ20180670.

Abstract

The immune system is capable of making antibodies against anything that is foreign, yet it does not react against components of self. In that sense, a fundamental requirement of the body's immune defense is specificity. Remarkably, this ability to specifically attack foreign antigens is directed even against antigens that have not been encountered a priori by the immune system. The specificity of an antibody for the foreign antigen evolves through an iterative process of somatic mutations followed by selection. There is, however, accumulating evidence that the antibodies are often functionally promiscuous or multi-specific which can lead to their binding to more than one antigen. An important cause of antibody cross-reactivity is molecular mimicry. Molecular mimicry has been implicated in the generation of autoimmune response. When foreign antigen shares similarity with the component of self, the antibodies generated could result in an autoimmune response. The focus of this review is to capture the contrast between specificity and promiscuity and the structural mechanisms employed by the antibodies to accomplish promiscuity, at the molecular level. The conundrum between the specificity of the immune system for foreign antigens on the one hand and the multi-reactivity of the antibody on the other has been addressed. Antibody specificity in the context of the rapid evolution of the antigenic determinants and molecular mimicry displayed by antigens are also discussed.

摘要

免疫系统能够针对任何外来物质产生抗体,但它不会对自身成分产生反应。从这个意义上说,身体免疫防御的一个基本要求就是特异性。值得注意的是,这种针对外来抗原的特异性攻击能力甚至可以针对那些免疫系统以前没有遇到过的抗原。抗体对外国抗原的特异性是通过体细胞突变和选择的迭代过程进化而来的。然而,越来越多的证据表明,抗体通常具有功能上的混杂性或多特异性,这可能导致它们与不止一种抗原结合。抗体交叉反应的一个重要原因是分子模拟。分子模拟已被牵涉到自身免疫反应的产生中。当外来抗原与自身成分具有相似性时,产生的抗体可能导致自身免疫反应。本文综述的重点是在分子水平上捕捉抗体特异性和混杂性之间的差异,以及抗体用于实现混杂性的结构机制。一方面是免疫系统对外国抗原的特异性,另一方面是抗体的多反应性,解决了这一难题。本文还讨论了在抗原的抗原决定簇快速进化和分子模拟的背景下,抗体的特异性。

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