Cytoplasmic DNA sensing boosts CD4+ T cell metabolism for inflammatory induction.

Life medicine Pub Date : 2023-06-13 eCollection Date: 2023-06-01 DOI:10.1093/lifemedi/lnad021
Jialin Ye, Jiemeng Fu, Hui Hou, Yan Wang, Wei Deng, Shumeng Hao, Yifei Pei, Jing Xu, Mingyue Zheng, Yichuan Xiao
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Abstract

DNA accumulation is associated with the development of autoimmune inflammatory diseases. However, the pathological role and underlying mechanism of cytoplasmic DNA accumulation in CD4+ T cells have not been well established. Here, we show that Trex1 deficiency-induced endogenous DNA accumulation in CD4+ T cells greatly promoted their induction of autoimmune inflammation in a lupus-like mouse model. Mechanistically, the accumulated DNA in CD4+ T cells was sensed by the KU complex, then triggered the activation of DNA-PKcs and ZAK and further facilitated the activation of AKT, which exacerbated glycolysis, thereby promoting the inflammatory responses. Accordingly, blocking the DNA sensing pathway in CD4+ T cells by genetic knockout of Zak or using our newly developed ZAK inhibitor iZAK2 attenuated all pathogenic characteristics in a lupus-like inflammation mouse model induced with Trex1-deficient CD4+ T cells. Overall, our study demonstrated a causal link between DNA-sensing and metabolic reprogramming in CD4+ T cells for inflammatory induction and suggested inhibition of the DNA sensing pathway may be a potential therapy for the treatment of inflammatory diseases.

细胞质DNA感应促进CD4+ T细胞代谢诱导炎症
DNA积累与自身免疫性炎症疾病的发展有关。然而,CD4+ T细胞细胞质DNA积累的病理作用和潜在机制尚不清楚。在狼疮样小鼠模型中,我们发现Trex1缺陷诱导的CD4+ T细胞内源性DNA积累极大地促进了它们对自身免疫性炎症的诱导。机制上,CD4+ T细胞中积累的DNA被KU复合物感知,触发DNA- pkcs和ZAK的激活,进而促进AKT的激活,从而加剧糖酵解,从而促进炎症反应。因此,在trex1缺陷CD4+ T细胞诱导的狼疮样炎症小鼠模型中,通过基因敲除Zak或使用我们新开发的Zak抑制剂iZAK2来阻断CD4+ T细胞中的DNA传感通路可以降低所有的致病特征。总的来说,我们的研究证明了CD4+ T细胞中DNA感应和代谢重编程之间的因果关系,并提示抑制DNA感应途径可能是治疗炎症性疾病的一种潜在疗法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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