Dynamic Cardiolipin Synthesis Is Required for CD8 + T Cell Immunity

Mitochondria constantly adapt to the metabolic needs of a cell. This mitochondrial plasticity is critical to T cells, which modulate metabolism depending on antigen-driven signals and environment. We show here that de novo synthesis of the mitochondrial membrane-specific lipid cardiolipin maintains...

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Veröffentlicht in:Cell metabolism 2020-12, Vol.32 (6), p.981-995.e7
Hauptverfasser: Corrado, Mauro, Edwards-Hicks, Joy, Villa, Matteo, Flachsmann, Lea J, Sanin, David E, Jacobs, Maaike, Baixauli, Francesc, Stanczak, Michal, Anderson, Eve, Azuma, Mai, Quintana, Andrea, Curtis, Jonathan D, Clapes, Thomas, Grzes, Katarzyna M, Kabat, Agnieszka M, Kyle, Ryan, Patterson, Annette E, Geltink, Ramon Klein, Amulic, Borko, Steward, Colin G, Strathdee, Douglas, Trompouki, Eirini, O'Sullivan, David, Pearce, Edward J, Pearce, Erika L
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Sprache:eng
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Zusammenfassung:Mitochondria constantly adapt to the metabolic needs of a cell. This mitochondrial plasticity is critical to T cells, which modulate metabolism depending on antigen-driven signals and environment. We show here that de novo synthesis of the mitochondrial membrane-specific lipid cardiolipin maintains CD8 T cell function. T cells deficient for the cardiolipin-synthesizing enzyme PTPMT1 had reduced cardiolipin and responded poorly to antigen because basal cardiolipin levels were required for activation. However, neither de novo cardiolipin synthesis, nor its Tafazzin-dependent remodeling, was needed for T cell activation. In contrast, PTPMT1-dependent cardiolipin synthesis was vital when mitochondrial fitness was required, most notably during memory T cell differentiation or nutrient stress. We also found CD8 T cell defects in a small cohort of patients with Barth syndrome, where TAFAZZIN is mutated, and in a Tafazzin-deficient mouse model. Thus, the dynamic regulation of a single mitochondrial lipid is crucial for CD8 T cell immunity.
ISSN:1550-4131
1932-7420
DOI:10.1016/j.cmet.2020.11.003