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快速的细胞分裂有助于 Ig 基因超突变期间 A/T 突变的有效诱导。

Rapid cell division contributes to efficient induction of A/T mutations during Ig gene hypermutation.

机构信息

Laboratory for Immune Diversity, Research Center for Allergy and Immunology, RIKEN Yokohama Institute, Yokohama, Kanagawa 230-0045, Japan.

出版信息

Mol Immunol. 2011 Sep;48(15-16):1993-9. doi: 10.1016/j.molimm.2011.06.218. Epub 2011 Jul 2.

DOI:10.1016/j.molimm.2011.06.218
PMID:21724261
Abstract

Ig gene hypermutation is initiated by the activation-induced cytidine deaminase (AID), which converts cytosine to uracil and generates a U:G lesion. One of the unsolved mysteries is how AID-triggered U:G lesions result in efficient induction of mutations at non-damaged A/T bases in the V(H) genes of germinal center (GC) B cells. Genetic and biochemical evidence suggests that components of the mismatch repair pathway and the low fidelity DNA polymerase η are required for the induction of A/T mutations. However, mismatch repair proficient NIH3T3 cells are unable to generate a high frequency of A/T mutations, even after DNA polymerase η overexpression, suggesting that additional mechanisms are involved. Since GC B cells undergo enormous expansion while undergoing hypermutation, we hypothesized that rapid cell division might play a role in the induction of A/T mutations. To test this hypothesis, we utilized an efficient in vitro mutagenesis system, which closely mirrors physiological Ig gene hypermutation, in the human GC-like B cell line Ramos. Ramos cells transduced with AID-IRES-GFP retrovirus were cultured for 10 days in medium supplemented with 20% or 2% fetal bovine serum (FBS) to allow rapid and slow proliferation, respectively. Analysis of the V(H) gene mutations revealed that A/T mutations were significantly reduced in 2% FBS compared with 20% FBS, with transitions more affected than transversions. These results demonstrate that rapid cell division contributes to efficient induction of A/T mutations and suggest that the rate of DNA replication has a profound effect on the processing of AID-triggered U:G lesions.

摘要

免疫球蛋白基因的超突变是由激活诱导的胞嘧啶脱氨酶(AID)引发的,该酶将胞嘧啶转化为尿嘧啶,并产生 U:G 损伤。一个悬而未决的问题是,AID 触发的 U:G 损伤如何导致生发中心(GC)B 细胞中 V(H) 基因中非受损的 A/T 碱基高效诱导突变。遗传和生化证据表明,错配修复途径的成分和低保真度 DNA 聚合酶 η 对于 A/T 突变的诱导是必需的。然而,即使在 DNA 聚合酶 η 过表达后,具有错配修复能力的 NIH3T3 细胞也无法产生高频的 A/T 突变,这表明存在其他机制。由于 GC B 细胞在经历超突变的同时经历了巨大的扩增,我们假设快速细胞分裂可能在 A/T 突变的诱导中发挥作用。为了验证这一假设,我们利用了一种高效的体外诱变系统,该系统在人类 GC 样 B 细胞系 Ramos 中紧密模拟生理免疫球蛋白基因超突变。用 AID-IRES-GFP 逆转录病毒转导的 Ramos 细胞在补充有 20%或 2%胎牛血清(FBS)的培养基中培养 10 天,以分别允许快速和缓慢增殖。对 V(H) 基因突变的分析表明,与 20% FBS 相比,2% FBS 中的 A/T 突变明显减少,转换比颠换更受影响。这些结果表明,快速细胞分裂有助于高效诱导 A/T 突变,并表明 DNA 复制的速度对 AID 触发的 U:G 损伤的处理有深远影响。

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引用本文的文献

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J6 downstream intronic sequence is dispensable for RNA polymerase II accumulation and somatic hypermutation of the variable gene in Ramos cells.J6 下游内含子序列对于 Ramos 细胞中 RNA 聚合酶 II 的积累和可变基因的体细胞高频突变是可有可无的。
Mol Immunol. 2018 May;97:101-108. doi: 10.1016/j.molimm.2018.03.031. Epub 2018 Apr 4.
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DNA polymerases β and λ do not directly affect Ig variable region somatic hypermutation although their absence reduces the frequency of mutations.DNA 聚合酶 β 和 λ 虽然不会直接影响 Ig 可变区体细胞超突变,但它们的缺失会降低突变频率。
DNA Repair (Amst). 2013 Dec;12(12):1087-93. doi: 10.1016/j.dnarep.2013.09.002. Epub 2013 Sep 29.