Disturbed mitochondrial dynamics in CD8+ TILs reinforce T cell exhaustion

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 mi...

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Veröffentlicht in:Nature immunology 2020-12, Vol.21 (12), p.1540-1551
Hauptverfasser: Yu, Yi-Ru, Imrichova, Hana, Wang, Haiping, Chao, Tung, Xiao, Zhengtao, Gao, Min, Rincon-Restrepo, Marcela, Franco, Fabien, Genolet, Raphael, Cheng, Wan-Chen, Jandus, Camilla, Coukos, George, Jiang, Yi-Fan, Locasale, Jason W., Zippelius, Alfred, Liu, Pu-Ste, Tang, Li, Bock, Christoph, Vannini, Nicola, Ho, Ping-Chih
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Sprache:eng
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Zusammenfassung: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. Ho and colleagues report that mitochondrial dysfunction and impaired mitophagy triggered by the tumor microenvironment lead to subsequent epigenetic changes and cause permanent T cell exhaustion and dysfunction.
ISSN:1529-2908
1529-2916
DOI:10.1038/s41590-020-0793-3