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Coordination of asparagine uptake and asparagine synthetase expression modulates CD8+ T cell activation
Helen Carrasco Hope, Rebecca J. Brownlie, Christopher M. Fife, Lynette Steele, Mihaela Lorger, Robert J. Salmond
Helen Carrasco Hope, Rebecca J. Brownlie, Christopher M. Fife, Lynette Steele, Mihaela Lorger, Robert J. Salmond
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Research Article Immunology

Coordination of asparagine uptake and asparagine synthetase expression modulates CD8+ T cell activation

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Abstract

T cell receptor (TCR) triggering by antigen results in metabolic reprogramming that, in turn, facilitates the exit of T cells from quiescence. The increased nutrient requirements of activated lymphocytes are met, in part, by upregulation of cell surface transporters and enhanced uptake of amino acids, fatty acids, and glucose from the environment. However, the role of intracellular pathways of amino acid biosynthesis in T cell activation is relatively unexplored. Asparagine is a nonessential amino acid that can be synthesized intracellularly through the glutamine-hydrolyzing enzyme asparagine synthetase (ASNS). We set out to define the requirements for uptake of extracellular asparagine and ASNS activity in CD8+ T cell activation. At early time points of activation in vitro, CD8+ T cells expressed little or no ASNS, and, as a consequence, viability and TCR-stimulated growth, activation, and metabolic reprogramming were substantially impaired under conditions of asparagine deprivation. At later time points (more than 24 hours of activation), TCR-induced mTOR-dependent signals resulted in ASNS upregulation that endowed CD8+ T cells with the capacity to function independently of extracellular asparagine. Thus, our data suggest that the coordinated upregulation of ASNS expression and uptake of extracellular asparagine is involved in optimal T cell effector responses.

Authors

Helen Carrasco Hope, Rebecca J. Brownlie, Christopher M. Fife, Lynette Steele, Mihaela Lorger, Robert J. Salmond

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Figure 3

Extracellular asparagine is limiting for initial TCR-induced metabolic reprogramming.

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Extracellular asparagine is limiting for initial TCR-induced metabolic r...
OT-1 T cells were stimulated with cognate SIINFEKL peptide for 24 hours in DMEM supplemented with or without asparagine and/or Gln, as indicated. Uptake of fluorescent glucose analogue 2-NBDG (A), kynurenine (B), and long-chain fatty acid BODIPY-C16 (C), and cell surface expression of transporters GLUT1 (D), CD98 (E), and CD36 (F) were assessed by FACS analysis. Data are mean fluorescence intensity values (MFI) or percentage of cells positive, as indicated. (G and H). Extracellular acidification rate (ECAR) and oxygen consumption rate (OCR) of activated OT-1 T cells were assessed using a Seahorse metabolic analyzer. (I) ATP production was assessed using a luminescence-based assay and luminometer. (J) Proportions of phospho-ribosomal protein S6+ (pS6 S240/244+) cells were assessed by intracellular staining and FACS analysis. Data are representative of 2 (G and H) or 3 repeated experiments. Data points represent technical replicates; (A–F, and J) n = 3, (G and H) n = 30, and (I) n = 4. *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001, as determined by 1-way ANOVA, with Tukey’s multiple comparisons test (A–F, and I), 2-tailed Student’s t test (G and H), or 2-way ANOVA (J).

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