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通过同源重组调控生发中心反应和体细胞超突变动态。

Regulation of the Germinal Center Reaction and Somatic Hypermutation Dynamics by Homologous Recombination.

机构信息

Department of Cell Biology, Institute of Biochemistry and Biophysics, Faculty of Biological Sciences, Friedrich Schiller University, 07745 Jena, Germany.

Research Group Applied Systems Biology, Leibniz Institute for Natural Product Research and Infection Biology, Hans Knöll Institute, 07745 Jena, Germany; and.

出版信息

J Immunol. 2019 Sep 15;203(6):1493-1501. doi: 10.4049/jimmunol.1900483. Epub 2019 Aug 9.

Abstract

During somatic hypermutation (SHM) of Ig genes in germinal center B cells, lesions introduced by activation-induced cytidine deaminase are processed by multiple error-prone repair pathways. Although error-free repair by homologous recombination (HR) is crucial to prevent excessive DNA strand breakage at activation-induced cytidine deaminase off-target genes, its role at the hypermutating Ig locus in the germinal center is unexplored. Using B cell-specific inactivation of the critical HR factor , we detected decreased proliferation, survival, and thereby class switching of ex vivo-activated B cells. Intriguingly, an HR defect allowed for a germinal center reaction and affinity maturation in vivo, albeit at reduced amounts. Analysis of SHM revealed that a certain fraction of DNA lesions at C:G bp was indeed repaired in an error-free manner via Brca2 instead of being processed by error-prone translesion polymerases. By applying a novel pseudo-time in silico analysis of mutational processes, we found that the activity of A:T mutagenesis during SHM increased during a germinal center reaction, but this was in part defective in -deficient mice. These mutation pattern changes in -deficient B cells were mostly specific for the Ig V region, suggesting a local or time-dependent need for recombination repair to survive high rates of SHM and especially A:T mutagenesis.

摘要

在生发中心 B 细胞中免疫球蛋白基因的体细胞超突变 (SHM)过程中,激活诱导的胞嘧啶脱氨酶引入的损伤通过多种易错修复途径进行处理。尽管同源重组 (HR) 的无错误修复对于防止激活诱导的胞嘧啶脱氨酶非靶基因的过度 DNA 链断裂至关重要,但它在生发中心中超突变 Ig 基因座中的作用尚未探索。通过特异性失活关键 HR 因子,我们检测到体外激活的 B 细胞增殖、存活减少,从而导致类别转换。有趣的是,HR 缺陷允许体内生发中心反应和亲和力成熟,尽管数量减少。对 SHM 的分析表明,C:G bp 处的某些 DNA 损伤确实以无错误的方式通过 Brca2 修复,而不是通过易错跨损伤聚合酶进行处理。通过对突变过程进行新型虚拟时间的分析,我们发现 SHM 过程中的 A:T 诱变活性在生发中心反应期间增加,但在 -缺陷小鼠中部分存在缺陷。-缺陷 B 细胞中的这些突变模式变化主要针对 Ig V 区,表明在高 SHM 率尤其是 A:T 诱变率下,需要局部或时间依赖性的重组修复来存活。

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