Uridine depletion impairs CD8⁺ T cell antitumor activity through N-glycosylation.

Xiao, Jianbiao; Li, Zhiyang; Ding, Yi; Zhu, Kejin; Zheng, Zhihao; Zhang, Yaowei; Weng, Jiawen; Wang, Feifei et al. · Cell Metab · 2026

basic_science · Level V

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Abstract

Immune checkpoint blockade (ICB) faces limitations owing to high cost and restricted efficacy. This study identifies SNX17 as a key mediator of ICB resistance. Elevated SNX17 correlates with poor anti-PD-1 response in humans and mice. SNX17 deletion in tumor cells inhibits tumor growth via CD8<sup>+</sup> T cell-dependent mechanisms. SNX17 reduces uridine in the tumor microenvironment (TME), suppressing IFN-γ and upregulating PD1 in CD8<sup>+</sup> T cells. Exogenous uridine shows antitumor efficacy comparable to anti-PD-1/PD-L1 in low-SNX17 tumors and overcomes resistance in high-SNX17 models. Uridine enhances CD8<sup>+</sup> T cell function by promoting CD45 N-glycosylation and LCK phosphorylation. Mechanistically, SNX17 stabilizes RUNX2, promoting UPP1 transcription and uridine degradation in the TME. These findings position SNX17 as an ICB response biomarker and nominate uridine as a cost-effective immunotherapeutic strategy.

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