自身免疫
免疫学
氧化应激
细胞生物学
生物
线粒体
免疫耐受
调节性T细胞
自身免疫性疾病
免疫系统
T细胞
抗体
白细胞介素2受体
内分泌学
作者
Themis Alissafi,Lydia Kalafati,Maria Lazari,Anastasia Filia,Ismini Kloukina,Maria Manifava,Jong-Hyung Lim,Vasileia Ismini Alexaki,Nicholas T. Ktistakis,Triantafyllos Doskas,George A. Garinis,Triantafyllos Chavakis,Dimitrios T. Boumpas,Panayotis Verginis
出处
期刊:Cell Metabolism
[Cell Press]
日期:2020-07-31
卷期号:32 (4): 591-604.e7
被引量:195
标识
DOI:10.1016/j.cmet.2020.07.001
摘要
Summary Regulatory T cells (Tregs) are vital for the maintenance of immune homeostasis, while their dysfunction constitutes a cardinal feature of autoimmunity. Under steady-state conditions, mitochondrial metabolism is critical for Treg function; however, the metabolic adaptations of Tregs during autoimmunity are ill-defined. Herein, we report that elevated mitochondrial oxidative stress and a robust DNA damage response (DDR) associated with cell death occur in Tregs in individuals with autoimmunity. In an experimental autoimmune encephalitis (EAE) mouse model of autoimmunity, we found a Treg dysfunction recapitulating the features of autoimmune Tregs with a prominent mtROS signature. Scavenging of mtROS in Tregs of EAE mice reversed the DDR and prevented Treg death, while attenuating the Th1 and Th17 autoimmune responses. These findings highlight an unrecognized role of mitochondrial oxidative stress in defining Treg fate during autoimmunity, which may facilitate the design of novel immunotherapies for diseases with disturbed immune tolerance.
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