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Metabolic shift induced by systemic activation of T cells in PD-1-deficient mice perturbs brain monoamines and emotional behavior. | LitMetric

AI Article Synopsis

  • Activated T cells change their metabolism, but the overall effects of their sustained activation on the body haven't been fully studied.
  • In mice lacking the PD-1 receptor (Pdcd1 mice), heightened T cell activity led to a decrease in amino acids in the serum, as these amino acids accumulated in the T cells instead.
  • This depletion of amino acids, particularly tryptophan and tyrosine, resulted in lower levels of key neurotransmitters like serotonin and dopamine in the brain, leading to increased anxiety and fear behaviors.

Article Abstract

T cells reorganize their metabolic profiles after being activated, but the systemic metabolic effect of sustained activation of the immune system has remained unexplored. Here we report that augmented T cell responses in Pdcd1 mice, which lack the inhibitory receptor PD-1, induced a metabolic serum signature characterized by depletion of amino acids. We found that the depletion of amino acids in serum was due to the accumulation of amino acids in activated Pdcd1 T cells in the lymph nodes. A systemic decrease in tryptophan and tyrosine led to substantial deficiency in the neurotransmitters serotonin and dopamine in the brain, which resulted in behavioral changes dominated by anxiety-like behavior and exacerbated fear responses. Together these data indicate that excessive activation of T cells causes a systemic metabolomic shift with consequences that extend beyond the immune system.

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Source
http://dx.doi.org/10.1038/ni.3867DOI Listing

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