Article

PGK1 epigenetically silences STING via DNMT1 and its knockdown synergizes with STING agonists in pancreatic cancer

Wan-mei Liu1,2, Jia-hui Xu1,3, Chun-yong Ding1,2, Ao Zhang1,2,3,4
1 Shanghai Frontiers Science Center of Drug Target Identification and Delivery, School of Pharmaceutical Sciences, Shanghai Jiao Tong University, Shanghai 200240, China
2 State Key Laboratory of Innovative Immunotherapy, Minhang District, Shanghai Jiao Tong University, Shanghai 200240, China
3 Shanghai Artificial Intelligence Laboratory, Shanghai 200433, China
4 The First Dongguan Affiliated Hospital, Guangdong Medical University, Dongguan 523808, China
Correspondence to: Chun-yong Ding: chunding@sjtu.edu.cn, Ao Zhang: ao6919zhang@sjtu.edu.cn,
DOI: 10.1038/s41401-026-01809-6
Received: 25 November 2025
Accepted: 22 March 2026
Advance online: 18 May 2026

Abstract

The highly immunosuppressive tumor microenvironment in pancreatic ductal adenocarcinoma (PDAC) severely limits the efficacy of current immunotherapies. Identifying key molecular drivers of this immunosuppressive niche is therefore essential for developing new treatment strategies. In this study, through comprehensive bioinformatic analysis of PDAC clinical datasets and systematic experimental validation, we demonstrate that PGK1 is upregulated in PDAC and is associated with poor immune infiltration. Genetic knockdown of PGK1 upregulated STING expression, promoted the recruitment of antitumor immune cells into the tumor microenvironment, and significantly enhanced the in vivo efficacy of STING agonist treatment. Mechanistically, PGK1 stabilizes DNMT1 by blocking its ubiquitination-mediated degradation, which in turn promotes methylation of the STING promoter and suppresses its transcription. Our findings reveal a non-metabolic role of PGK1 in promoting an immunosuppressive microenvironment and propose a promising combination strategy targeting the PGK1-STING axis for the treatment of PDAC.
Keywords: PGK1; STING; DNMT1; antitumor effect; pancreatic adenocarcinoma

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