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IgH3' 调控区增强了异位类别转换重组。

IgH 3' regulatory region increases ectopic class switch recombination.

机构信息

UMR CNRS 7276, INSERM 1262 and Université de Limoges: Contrôle de la Réponse Immune B et Lymphoprolifération, 2 rue du Pr. Descottes, Limoges, France.

Université de Limoges, US 42/UMS2015 plateforme Biologie Intégrative Santé Chimie Environnement (BISCEm), Limoges, France.

出版信息

PLoS Genet. 2021 Feb 8;17(2):e1009288. doi: 10.1371/journal.pgen.1009288. eCollection 2021 Feb.

Abstract

DNA lesions inflicted by activation-induced deaminase (AID) instrumentally initiate the processes reshaping immunoglobulin genes in mature B-cells, from local somatic hypermutation (SHM) to junctions of distant breaks during class switch recombination (CSR). It remains incompletely understood how these divergent outcomes of AID attacks are differentially and temporally focused, with CSR strictly occurring in the Ig heavy chain (IgH) locus while SHM concentrates on rearranged V(D)J regions in the IgH and Ig light chain loci. In the IgH locus, disruption of either the 3'Regulatory Region (3'RR) super-enhancer or of switch (S) regions preceding constant genes, profoundly affects CSR. Reciprocally, we now examined if these elements are sufficient to induce CSR in a synthetic locus based on the Igκ locus backbone. Addition of a surrogate "core 3'RR" (c3'RR) and of a pair of transcribed and spliced Switch regions, together with a reporter system for "κ-CSR" yielded a switchable Igκ locus. While the c3'RR stimulated SHM at S regions, it also lowered the local SHM threshold necessary for switch recombination to occur. The 3'RR thus both helps recruit AID to initiate DNA lesions, but then also promotes their resolution through long-distance synapses and recombination following double-strand breaks.

摘要

激活诱导的脱氨酶 (AID) 造成的 DNA 损伤在成熟 B 细胞中启动了重排免疫球蛋白基因的过程,从局部体细胞超突变 (SHM) 到类别转换重组 (CSR) 期间的远断裂连接。AID 攻击的这些不同结果如何在时间和空间上得到不同的聚焦,CSR 严格发生在 Ig 重链 (IgH) 基因座上,而 SHM 则集中在 IgH 和 Ig 轻链基因座上重排的 V(D)J 区,这一点仍不完全清楚。在 IgH 基因座中,破坏 3' 调控区 (3'RR) 超级增强子或恒定基因前的开关 (S) 区,都会严重影响 CSR。反过来,我们现在研究了这些元件是否足以在基于 Igκ 基因座骨架的合成基因座中诱导 CSR。添加替代的“核心 3'RR” (c3'RR) 和一对转录和剪接的开关区,以及“κ-CSR”的报告系统,产生了一个可开关的 Igκ 基因座。虽然 c3'RR 刺激 S 区的 SHM,但它也降低了发生开关重组所需的局部 SHM 阈值。因此,3'RR 既有助于招募 AID 来启动 DNA 损伤,又通过长距离突触和双链断裂后的重组促进其解决。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c01/7869978/abc4825b5024/pgen.1009288.g001.jpg

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