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核苷酸插入和缺失与点突变互补,极大地扩展了抗体体细胞超突变所产生的多样性。

Nucleotide insertions and deletions complement point mutations to massively expand the diversity created by somatic hypermutation of antibodies.

作者信息

Bowers Peter M, Verdino Petra, Wang Zhengyuan, da Silva Correia Jean, Chhoa Mark, Macondray Griffin, Do Minjee, Neben Tamlyn Y, Horlick Robert A, Stanfield Robyn L, Wilson Ian A, King David J

机构信息

From Anaptysbio Inc., San Diego, California 92121 and

From Anaptysbio Inc., San Diego, California 92121 and.

出版信息

J Biol Chem. 2014 Nov 28;289(48):33557-67. doi: 10.1074/jbc.M114.607176. Epub 2014 Oct 15.

Abstract

During somatic hypermutation (SHM), deamination of cytidine by activation-induced cytidine deaminase and subsequent DNA repair generates mutations within immunoglobulin V-regions. Nucleotide insertions and deletions (indels) have recently been shown to be critical for the evolution of antibody binding. Affinity maturation of 53 antibodies using in vitro SHM in a non-B cell context was compared with mutation patterns observed for SHM in vivo. The origin and frequency of indels seen during in vitro maturation were similar to that in vivo. Indels are localized to CDRs, and secondary mutations within insertions further optimize antigen binding. Structural determination of an antibody matured in vitro and comparison with human-derived antibodies containing insertions reveal conserved patterns of antibody maturation. These findings indicate that activation-induced cytidine deaminase acting on V-region sequences is sufficient to initiate authentic formation of indels in vitro and in vivo and that point mutations, indel formation, and clonal selection form a robust tripartite system for antibody evolution.

摘要

在体细胞高频突变(SHM)过程中,激活诱导的胞苷脱氨酶对胞苷进行脱氨作用,随后的DNA修复在免疫球蛋白V区产生突变。最近研究表明,核苷酸插入和缺失(indels)对抗体结合的进化至关重要。将53种抗体在非B细胞环境中使用体外SHM的亲和力成熟情况与体内SHM观察到的突变模式进行了比较。体外成熟过程中indels的起源和频率与体内相似。Indels定位于互补决定区(CDRs),插入区内的二次突变进一步优化抗原结合。对体外成熟抗体的结构测定以及与含插入序列的人源抗体的比较揭示了抗体成熟的保守模式。这些发现表明,作用于V区序列的激活诱导的胞苷脱氨酶足以在体外和体内启动indels的真实形成,并且点突变、indel形成和克隆选择形成了一个强大的三方系统用于抗体进化。

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