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体细胞超突变和类别转换重组的分子机制。

Molecular Mechanisms of Somatic Hypermutation and Class Switch Recombination.

机构信息

Institut de Recherches Cliniques de Montréal (IRCM), Montreal, QC, Canada; Mcgill University, Montreal, QC, Canada.

Institut de Recherches Cliniques de Montréal (IRCM), Montreal, QC, Canada; Mcgill University, Montreal, QC, Canada; Université de Montréal, Montreal, QC, Canada.

出版信息

Adv Immunol. 2017;133:37-87. doi: 10.1016/bs.ai.2016.11.002. Epub 2016 Dec 22.

Abstract

In order to promote an efficient humoral immune response, germinal center B cells modify both the antigen recognition and effector domains by programmed genetic alterations of their antibody genes. To do so, B cells use the enzyme activation-induced deaminase (AID), which transforms deoxycytidine into deoxyuridine at the immunoglobulin genes, triggering mutagenic DNA repair. Data accumulated during the past decade have significantly advanced our understanding of how AID activity is regulated and preferentially targeted to the immunoglobulin genes. There is also a better understanding of the ways by which AID-catalyzed uracil is recognized and the ensuing downstream processing underpinning the mechanisms of somatic hypermutation and class switch recombination. Here, we critically review these advances in the context of their relevance for the humoral immune response. A detailed understanding of these molecular mechanisms is paramount to uncover the basis of B cell intrinsic immunodeficiency, as well as to suggest tools and strategies that might allow boosting antibody gene diversification in the context of immunizations or infections that require the elicitation of rare or highly mutated antibody variants.

摘要

为了促进有效的体液免疫反应,生发中心 B 细胞通过其抗体基因的程序性遗传改变来修饰抗原识别和效应结构域。为此,B 细胞利用酶激活诱导脱氨酶(AID),将脱氧胞苷转化为免疫球蛋白基因中的脱氧尿苷,引发诱变 DNA 修复。在过去十年中积累的数据极大地提高了我们对 AID 活性如何被调节以及如何优先靶向免疫球蛋白基因的理解。人们也更好地理解了 AID 催化的尿嘧啶如何被识别,以及随后的下游处理,这些处理是体细胞超突变和类别转换重组机制的基础。在这里,我们在与体液免疫反应相关的背景下批判性地审查了这些进展。对这些分子机制的详细了解对于揭示 B 细胞内在免疫缺陷的基础至关重要,并为在需要诱导罕见或高度突变的抗体变体的免疫接种或感染的情况下增强抗体基因多样化提供了工具和策略。

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