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Non-homologous end joining in class switch recombination: the beginning of the end

机译:类开关重组中的非同源结束连接:结束的开始

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摘要

Immunoglobulin class switch recombination (CSR) is initiated by a B-cell-specific factor, activation-induced deaminase, probably through deamination of deoxycytidine residues within the switch (S) regions. The initial lesions in the S regions are subsequently processed, resulting in the production of DNA double-strand breaks (DSBs). These breaks will then be recognized, edited and repaired, finally leading to the recombination of the two S regions. Two major repair pathways have been implicated in CSR, the predominant non-homologous end joining (NHEJ) and the alternative end-joining (A-EJ) pathways. The former requires not only components of the ‘classical’ NHEJ machinery, i.e. Ku70/Ku80, DNA-dependent protein kinase catalytic subunit, DNA ligase IV and XRCC4, but also a number of DNA-damage sensors or adaptors, such as ataxia–telangiectasia mutated, γH2AX, 53BP1, MDC1, the Mre11–Rad50–NBS1 complex and the ataxia telangiectasia and Rad3-related protein (ATR). The latter pathway is not well characterized yet and probably requires microhomologies. In this review, we will focus on the current knowledge of the predominant NHEJ pathway in CSR and will also give a perspective on the A-EJ pathway.
机译:免疫球蛋白类开关重组(CSR)由B细胞特异性因子激活诱导的脱氨酶引发,可能是通过在开关(S)区域内的脱氧胞苷残基脱氨基而引发的。随后处理S区中的初始病变,从而导致DNA双链断裂(DSB)的产生。然后将识别,编辑和修复这些断裂,最终导致两个S区的重组。 CSR涉及两个主要的修复途径,即主要的非同源末端连接(NHEJ)和替代末端连接(A-EJ)途径。前者不仅需要“经典” NHEJ机制的组成部分,例如Ku70 / Ku80,DNA依赖性蛋白激酶催化亚基,DNA连接酶IV和XRCC4,而且还需要许多DNA损伤传感器或适配器,例如共济失调-毛细血管扩张突变的γH2AX,53BP1,MDC1,Mre11–Rad50–NBS1复合体以及共济失调的毛细血管扩张和Rad3相关蛋白(ATR)。后一种途径尚未很好表征,可能需要微同源性。在本文中,我们将重点介绍企业社会责任中主要的NHEJ途径的最新知识,并提供A-EJ途径的观点。

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