Despite the pleiotropic capacities of cytokines in modulating cell behaviors, their therapeutic application in cancer remains challenging. Here, we show that the IFN-γ/IFN-β/TGF-β cocktail integrates these three signals with a cytosolic pore-forming protein, gasdermin E (GSDME), and synergistically drives its delivery into the lysosomes of pancreatic adenocarcinoma (PDAC) tumor-repopulating cells (TRCs), where GSDME is cleaved to mediate lysosomal pore formation. Mechanistically, IFN-γ signaling phosphorylates GSDME, enabling phosphorylated GSDME (p-GSDME) to bind the Golgi transmembrane protein TMED10 and subsequently traffic to lysosomes, where cathepsin D cleaves it into active N-GSDME, which induces lysosomal decomposition in TRCs. In parallel, IFN-β activates STAT1/STAT3 to upregulate cathepsin D expression, whereas TGF-β enhances GSDME phosphorylation by downregulating PPP1R3G, a regulatory subunit of protein phosphatase 1. Using lipid-hybrid nanoparticle-delivered mRNA technology, the tri-cytokine cocktail demonstrated therapeutic efficacy against orthotopic PDAC in mice and PDX models, highlighting its translational potential for PDAC patients.
Gasdermin E-mediated lysosome-pore formation curbs pancreatic ductal adenocarcinoma via IFN-γ/IFN-β/TGF-β cocktail mRNA-LNP.
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作者:Zhou Yabo, Wang Dianheng, Wang Shujing, Zhang Chaoying, He Lina, Kang Youli, Yuan Wu, Nguyen Andrew, Chen Jie, Zhou Nannan, Zhou Li, Wang Zhenfeng, Zhang Chaoqi, Yong Tuying, Tang Ke, Zhang Huafeng, Ma Jingwei, Lv Jiadi, Huang Bo
| 期刊: | Cellular & Molecular Immunology | 影响因子: | 19.800 |
| 时间: | 2026 | 起止号: | 2026 Mar;23(3):329-343 |
| doi: | 10.1038/s41423-026-01390-2 | ||
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