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13C metabolite tracing reveals glutamine and acetate as critical in vivo fuels for CD8+ T cells

Ma, E. H.; Dahabieh, M. S.; DeCamp, L. M.; Kaymak, I.; Kitchen-Goosen, S. M.; Roy, D. G.; Verway, M. J.; Johnson, R. M.; Samborska, B.; Scullion, C. A.; Steadman, M.; Vos, M.; Roddy, T. P.; Krawczyk, C. M.; Williams, K. S.; Sheldon, R. D.; Jones, R. G.

2023-06-11 immunology
10.1101/2023.06.09.544407 bioRxiv
Show abstract

Infusion of 13C-labeled metabolites provides a gold-standard for understanding the metabolic processes used by T cells during immune responses in vivo. Through infusion of 13C-labeled metabolites (glucose, glutamine, acetate) in Listeria monocytogenes (Lm)-infected mice, we demonstrate that CD8+ T effector (Teff) cells utilize metabolites for specific pathways during specific phases of activation. Highly proliferative early Teff cells in vivo shunt glucose primarily towards nucleotide synthesis and leverage glutamine anaplerosis in the tricarboxylic acid (TCA) cycle to support ATP and de novo pyrimidine synthesis. Additionally, early Teff cells rely on glutamic-oxaloacetic transaminase 1 (Got1)--which regulates de novo aspartate synthesis--for effector cell expansion in vivo. Importantly, Teff cells change fuel preference over the course of infection, switching from glutamine-to acetate-dependent TCA cycle metabolism late in infection. This study provides insights into the dynamics of Teff metabolism, illuminating distinct pathways of fuel consumption associated with Teff cell function in vivo. TeaserInterrogating dynamics of fuel utilization by CD8+ T cells in vivo reveals new metabolic checkpoints for immune function in vivo.

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