bioRxiv · 10.1101/2024.10.10.617261
Glucose-dependent glycosphingolipid biosynthesis fuels CD8+ T cell function and tumor control
Abstract
Glucose is essential for T cell proliferation and function, yet its specific metabolic roles in vivo remain poorly defined. Here, we identify glycosphingolipid (GSL) biosynthesis as a key pathway fueled by glucose that enables CD8+ T cell expansion and cytotoxic function in vivo. Using 13C-based stable isotope tracing, we demonstrate that CD8+ effector T cells use glucose to synthesize uridine diphosphate-glucose (UDP-Glc), a precursor for glycogen, glycan, and GSL biosynthesis. Inhibiting GSL production by targeting the enzymes UGP2 or UGCG impairs CD8+ T cell expansion and cytolytic activity without affecting glucose-dependent energy production. Mechanistically, we show that glucose-dependent GSL biosynthesis is required for plasma membrane lipid raft integrity and aggregation following TCR stimulation. Moreover, UGCG-deficient CD8+ T cells display reduced granzyme expression and tumor control in vivo. Together, our data establish GSL biosynthesis as a critical metabolic fate of glucose--independent of energy production--required for CD8+ T cell responses in vivo.
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Longo, J., DeCamp, L. M., Oswald, B. M., Teis, R., Reyes-Oliveras, A., Dahabieh, M. S., Ellis, A. E., Vincent, M. P., Damico, H., Gallik, K. L., Compton, S. E., Capan, C. D., Williams, K. S., Esquibel, C. R., Madaj, Z. B., Lee, H., Roy, D. G., Krawczyk, C. M., Haab, B. B., Sheldon, R. D., Jones, R. G.. 2024-10-14. Glucose-dependent glycosphingolipid biosynthesis fuels CD8+ T cell function and tumor control. https://doi.org/10.1101/2024.10.10.617261
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