A DNA break- and phosphorylation-dependent positive feedback loop promotes immunoglobulin class-switch recombination

DNA断裂和磷酸化依赖的正反馈回路促进免疫球蛋白类别转换重组

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作者:Bao Q Vuong, Kayleigh Herrick-Reynolds #, Bharat Vaidyanathan #, Joseph N Pucella #, Anna J Ucher, Nina M Donghia, Xiwen Gu, Laura Nicolas, Urszula Nowak, Numa Rahman, Matthew P Strout, Kevin D Mills, Janet Stavnezer, Jayanta Chaudhuri

Abstract

The ability of activation-induced cytidine deaminase (AID) to efficiently mediate class-switch recombination (CSR) is dependent on its phosphorylation at Ser38; however, the trigger that induces AID phosphorylation and the mechanism by which phosphorylated AID drives CSR have not been elucidated. Here we found that phosphorylation of AID at Ser38 was induced by DNA breaks. Conversely, in the absence of AID phosphorylation, DNA breaks were not efficiently generated at switch (S) regions in the immunoglobulin heavy-chain locus (Igh), consistent with a failure of AID to interact with the endonuclease APE1. Additionally, deficiency in the DNA-damage sensor ATM impaired the phosphorylation of AID at Ser38 and the interaction of AID with APE1. Our results identify a positive feedback loop for the amplification of DNA breaks at S regions through the phosphorylation- and ATM-dependent interaction of AID with APE1.

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