Apex1 safeguards genomic stability to ensure a cytopathic T cell fate in autoimmune disease models

效应器 生物 基因组不稳定性 细胞生物学 DNA损伤 DNA 遗传学
作者
Xiang Xiao,Yong Du,Si Sun,Xiaojun Su,Junji Xing,Guangchuan Wang,Steven M. Elzein,Dawei Zou,Laurie J. Minze,Zhuyun Mao,Rafik M. Ghobrial,Ashton A. Connor,Wenhao Chen,Zhiqiang Zhang,Li X
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
被引量:1
标识
DOI:10.1172/jci183671
摘要

T cells have a remarkable capacity to clonally expand, a process that is intricately linked to their effector activities. As vigorously proliferating T cell also incur substantial DNA lesions, how the dividing T cells safeguard their genomic integrity to allow the generation of T effector cells remains largely unknown. Here we report the identification of the apurinic/apyrimidinic endonuclease-1 (Apex1) as an indispensable molecule for the induction of cytopathic T effectors in mouse models. We demonstrate that conditional deletion of Apex1 in T cells results in a remarkable accumulation of baseless DNA sites in the genome of proliferating T cells, which further leads to genomic instability and apoptotic cell death. Consequently, Apex1-deleted T cells fail to acquire any effector features after activation and fail to mediate autoimmune diseases and allergic tissue damages. Detailed mutational analyses pinpoint the importance of its endonuclease domain in the generation of T effector cells. We provide further evidence that inhibiting the base repair activities of Apex1 with chemical inhibitors similarly abrogates the induction of autoimmune diseases. Collectively, our study suggests that Apex1 serves as a gatekeeper for the generation of cytopathic T cells and that therapeutically targeting Apex1 may have important clinical implications in the treatment of autoimmune diseases.
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