Metabolic modulation of mitochondrial mass during CD4+ T cell activation

CD4+ T细胞活化过程中线粒体质量的代谢调节

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作者:Kiran Kurmi ,Dan Liang ,Robert van de Ven ,Peter Georgiev ,Brandon Mark Gassaway ,SeongJun Han ,Giulia Notarangelo ,Isaac S Harris ,Cong-Hui Yao ,Joon Seok Park ,Song-Hua Hu ,Jingyu Peng ,Jefte M Drijvers ,Sarah Boswell ,Artem Sokolov ,Stephanie K Dougan ,Peter K Sorger ,Steven P Gygi ,Arlene H Sharpe ,Marcia C Haigis

Abstract

Mitochondrial biogenesis initiates within hours of T cell receptor (TCR) engagement and is critical for T cell activation, function, and survival; yet, how metabolic programs support mitochondrial biogenesis during TCR signaling is not fully understood. Here, we performed a multiplexed metabolic chemical screen in CD4+ T lymphocytes to identify modulators of metabolism that impact mitochondrial mass during early T cell activation. Treatment of T cells with pyrvinium pamoate early during their activation blocks an increase in mitochondrial mass and results in reduced proliferation, skewed CD4+ T cell differentiation, and reduced cytokine production. Furthermore, administration of pyrvinium pamoate at the time of induction of experimental autoimmune encephalomyelitis, an experimental model of multiple sclerosis in mice, prevented the onset of clinical disease. Thus, modulation of mitochondrial biogenesis may provide a therapeutic strategy for modulating T cell immune responses.

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