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Disturbed mitochondrial dynamics in CD8+ TILs reinforce T cell exhaustion.

Yi-Ru YuHana ImrichovaHaiping WangTung ChaoZhengtao XiaoMin GaoMarcela Rincon-RestrepoFabien FrancoRaphael GenoletWan-Chen ChengCamilla JandusGeorge CoukosYi-Fan JiangJason W LocasaleAlfred ZippeliusPu-Ste LiuLi TangChristoph BockNicola VanniniPing-Chih Ho
Published in: Nature immunology (2020)
The metabolic challenges present in tumors attenuate the metabolic fitness and antitumor activity of tumor-infiltrating T lymphocytes (TILs). However, it remains unclear whether persistent metabolic insufficiency can imprint permanent T cell dysfunction. We found that TILs accumulated depolarized mitochondria as a result of decreased mitophagy activity and displayed functional, transcriptomic and epigenetic characteristics of terminally exhausted T cells. Mechanistically, reduced mitochondrial fitness in TILs was induced by the coordination of T cell receptor stimulation, microenvironmental stressors and PD-1 signaling. Enforced accumulation of depolarized mitochondria with pharmacological inhibitors induced epigenetic reprogramming toward terminal exhaustion, indicating that mitochondrial deregulation caused T cell exhaustion. Furthermore, supplementation with nicotinamide riboside enhanced T cell mitochondrial fitness and improved responsiveness to anti-PD-1 treatment. Together, our results reveal insights into how mitochondrial dynamics and quality orchestrate T cell antitumor responses and commitment to the exhaustion program.
Keyphrases
  • oxidative stress
  • body composition
  • physical activity
  • dna methylation
  • gene expression
  • diabetic rats
  • quality improvement
  • genome wide
  • endoplasmic reticulum
  • drug induced