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53BP1在类别转换重组过程中对基因座染色质拓扑结构有贡献。

53BP1 Contributes to Locus Chromatin Topology during Class Switch Recombination.

作者信息

Feldman Scott, Wuerffel Robert, Achour Ikbel, Wang Lili, Carpenter Phillip B, Kenter Amy L

机构信息

Department of Microbiology and Immunology, University of Illinois College of Medicine, Chicago, IL 60612-7344; and.

Department of Biochemistry and Molecular Biology, University of Texas Health Science Center, Houston, TX 77030.

出版信息

J Immunol. 2017 Mar 15;198(6):2434-2444. doi: 10.4049/jimmunol.1601947. Epub 2017 Feb 3.

Abstract

In B lymphocytes, Ig class switch recombination (CSR) is induced by activation-induced cytidine deaminase, which initiates a cascade of events leading to DNA double-strand break formation in switch (S) regions. Resolution of DNA double-strand breaks proceeds through formation of S-S synaptic complexes. S-S synapsis is mediated by a chromatin loop that spans the C region domain of the locus. S-S junctions are joined via a nonhomologous end joining DNA repair process. CSR occurs via an intrachromosomal looping out and deletion mechanism that is 53BP1 dependent. However, the mechanism by which 53BP1 facilitates deletional CSR and inhibits inversional switching events remains unknown. We report a novel architectural role for 53BP1 in chromatin looping in mouse B cells. Long-range interactions between the Eμ and 3'Eα enhancers are significantly diminished in the absence of 53BP1. In contrast, germline transcript promoter:3'Eα looping interactions are unaffected by 53BP1 deficiency. Furthermore, 53BP1 chromatin occupancy at sites in the locus is B cell specific, is correlated with histone H4 lysine 20 marks, and is subject to chromatin spreading. Thus, 53BP1 is required for three-dimensional organization of the locus and provides a plausible explanation for the link with 53BP1 enforcement of deletional CSR.

摘要

在B淋巴细胞中,免疫球蛋白类别转换重组(CSR)由激活诱导的胞苷脱氨酶诱导,该酶引发一系列事件,导致开关(S)区域形成DNA双链断裂。DNA双链断裂的修复通过S-S突触复合物的形成进行。S-S突触由跨越该基因座C区域结构域的染色质环介导。S-S连接通过非同源末端连接DNA修复过程连接。CSR通过依赖于53BP1的染色体内环出和缺失机制发生。然而,53BP1促进缺失性CSR并抑制倒位转换事件的机制仍然未知。我们报道了53BP1在小鼠B细胞染色质环化中的一种新的结构作用。在没有53BP1的情况下,Eμ和3'Eα增强子之间的长程相互作用显著减少。相比之下,种系转录本启动子:3'Eα环化相互作用不受53BP1缺陷的影响。此外,53BP1在该基因座位点的染色质占据是B细胞特异性的,与组蛋白H4赖氨酸20标记相关,并受到染色质扩散的影响。因此,53BP1是该基因座三维组织所必需的,并为与53BP1执行缺失性CSR的联系提供了一个合理的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e154/5695034/ef2d70c0abe1/nihms842405f1.jpg

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