PD-1 signaling negatively regulates the common cytokine receptor γ chain via MARCH5-mediated ubiquitination and degradation to suppress anti-tumor immunity

Combination therapy with PD-1 blockade and IL-2 substantially improves anti-tumor efficacy comparing to monotherapy. The underlying mechanisms responsible for the synergistic effects of the combination therapy remain enigmatic. Here we show that PD-1 ligation results in BATF-dependent transcriptiona...

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Veröffentlicht in:Cell research 2023-12, Vol.33 (12), p.923-939
Hauptverfasser: Liu, Rui, Zeng, Lin-Wen, Li, Hui-Fang, Shi, Jun-Ge, Zhong, Bo, Shu, Hong-Bing, Li, Shu
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Sprache:eng
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Zusammenfassung:Combination therapy with PD-1 blockade and IL-2 substantially improves anti-tumor efficacy comparing to monotherapy. The underlying mechanisms responsible for the synergistic effects of the combination therapy remain enigmatic. Here we show that PD-1 ligation results in BATF-dependent transcriptional induction of the membrane-associated E3 ubiquitin ligase MARCH5, which mediates K27-linked polyubiquitination and lysosomal degradation of the common cytokine receptor γ chain (γ c ). PD-1 ligation also activates SHP2, which dephosphorylates γ c Y357 , leading to impairment of γ c family cytokine-triggered signaling. Conversely, PD-1 blockade restores γ c level and activity, thereby sensitizing CD8 + T cells to IL-2. We also identified Pitavastatin Calcium as an inhibitor of MARCH5, which combined with PD-1 blockade and IL-2 significantly improves the efficacy of anti-tumor immunotherapy in mice. Our findings uncover the mechanisms by which PD-1 signaling antagonizes γ c family cytokine-triggered immune activation and demonstrate that the underlying mechanisms can be exploited for increased efficacy of combination immunotherapy of cancer.
ISSN:1748-7838
1001-0602
1748-7838
DOI:10.1038/s41422-023-00890-4