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◆ Cell reports2026-09-16

MG53 suppresses IRF7 to reprogram macrophages and promote antitumor immunity in pancreatic ductal adenocarcinoma.

Yumeng Pei, Meng Fang, Fan Zhang, Danyang Zhao, Yini Li, Jinyan Huang, Xingmei Liang, Rui-Ping Xiao, Tingbo Liang, Hong-Kun Wu

原始摘要(英文原文)· Original abstract
In pancreatic ductal adenocarcinoma (PDAC), the desmoplastic stroma and immunosuppressive tumor microenvironment (TME) present barriers to immunotherapy. Here, we show that MG53 (TRIM72) is a critical regulator of macrophage fate and anti-tumor immunity; its myeloid-specific depletion accelerates PDAC progression by locking macrophages into a suppressive state, whereas its restoration dismantles the immunosuppressive TME. Mechanistically, MG53 binds the Irf7 locus to suppress the pro-tumorigenic myeloid program, and concomitant IRF7 deletion reverses the phenotype of MG53-deficient models. Clinically, an MG53-low/IRF7-high TAM signature correlates with reduced survival across gastrointestinal malignancies, particularly within PDAC cohorts. Using a macrophage-tropic mRNA-LNP platform to restore MG53 expression in vivo, thereby suppressing tumor growth and enhancing antitumor immune activity in PDAC. Our findings demonstrate that MG53 functions as a myeloid checkpoint regulator and suggest mRNA-based reprogramming as a potential strategy to address therapeutic resistance in PDAC.
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MG53 suppresses IRF7 to reprogram macrophages and promote antitumor immunity in pancreatic ductal adenocarcinoma. — 科研速览 Science Skim