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Von Danwitz, U. J.

Publications and source records attributed to Von Danwitz, U. J..

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Adenosine impairs T cell function via activation of purine salvage pathway and AMP-induced inhibition of pyrimidine nucleotide biosynthesis

Extracellular adenosine (ADO) is a well-established immune checkpoint mediator suppressing T cells via activation of A2A receptors, yet intracellular mechanisms of ADO action remain less understood. Here, we show that activated human T cells transport extracellular ADO through equilibrative nucleoside transporter 1 (ENT1) and metabolize it through ATP salvage pathway. The generated ADO metabolite AMP inhibits UMP synthase (UMPS), the rate-limiting enzyme of de novo pyrimidine biosynthesis, leading to diminished ATP production via conventional bioenergetic pathways, increased apoptosis, and impaired effector functions of T cells. Flow cytometric and single-cell transcriptomic analyses further revealed that ADO restrains the exit of naive T cells from quiescence. All effects of ADO were phenocopied by treating T cells with the inhibitors of UMPS and reversed after pharmacological blockage of ENT1 or uridine supplementation. Additional molecular docking, molecular dynamics simulations, and free-energy analyses indicate that AMP can occupy the orotidine 5'-monophosphate (OMP) decarboxylase catalytic site of UMPS with the same anchoring contacts as substrate OMP and product UMP, providing a structural rationale for direct AMP-mediated inhibition of pyrimidine biosynthesis. These findings demonstrate that immunosuppressive effects of ADO extend beyond canonical adenosinergic signaling and involve cellular ADO uptake and modulation of purine and pyrimidine metabolism.

immunology↗