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◆ Drug resistance updates : reviews and commentaries in antimicrobial and anticancer chemotherapy2026-08-07

Tumor-intrinsic PHGDH inhibition sensitizes colorectal cancer to PD-1 blockade via α-ketoglutarate-mediated macrophage reprogramming.

Jieping Qiu, Jingwen Wei, Jiaming Liu, Jing Bai, Keqin Tan, Yuhao Wei, Haorui Zhou, Lusi Feng, Qianlong Kang, Huan Tong, Yuting Jiang, Yu Zhang, Jiaqing Yang, Xiaoqian Yang, Qin Zhang, Jingsi Dong, Yuwen Zhou, Xuelei Ma

原始摘要(英文原文)· Original abstract
Metabolic reprogramming of tumor cells profoundly shapes the tumor microenvironment and contributes to immunotherapy resistance in colorectal cancer (CRC). Here, we identify phosphoglycerate dehydrogenase (PHGDH), a rate-limiting enzyme in de novo serine biosynthesis, as a metabolic regulator of antitumor immunity. In syngeneic CRC models, pharmacological PHGDH inhibition enhanced the efficacy of PD-1 blockade, while genetic PHGDH silencing recapitulated the major immunometabolic effects of WQ-2101. Single-cell transcriptomic and functional analyses showed that tumor-cell PHGDH inhibition suppressed serine metabolism and reduced tumor-derived α-ketoglutarate availability, thereby reprogramming tumor-associated macrophages toward an inflammatory, antigen-presenting phenotype. Mechanistically, reduced α-ketoglutarate attenuated KDM5B-mediated H3K4 demethylation, preserving H3K4me3 enrichment at STAT1 target promoters, including Nos2 and Cxcl9, and activating JAK-STAT1 signaling. These reprogrammed macrophages enhanced CD8⁺ T-cell infiltration and cytotoxicity, thereby augmenting antitumor immunity and sensitizing tumors to PD-1 blockade. In a retrospective cohort of 51 patients with CRC receiving immune checkpoint inhibitor (ICI)-based therapy, lower tumor PHGDH expression was associated with a higher response rate, longer progression-free survival, increased CD8⁺ lymphocyte density, and a higher proportion of CD68⁺iNOS⁺ macrophages. Collectively, these findings define a tumor-macrophage metabolic-epigenetic circuit through which PHGDH-dependent metabolic cues regulate macrophage state and antitumor immunity, supporting PHGDH as a potential therapeutic target and a candidate outcome-associated biomarker in patients with CRC receiving ICI-based therapy.
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Tumor-intrinsic PHGDH inhibition sensitizes colorectal cancer to PD-1 blockade via α-ketoglutarate-mediated macrophage reprogramming. — 科研速览 Science Skim