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EGR4 transcriptionally upregulates GDF15 to promote gastric cancer metastasis.

Cell death & disease 2025 Vol.16(1) p. 807

Liu W, Li Y, Liang L, Zheng L, Zeng R, Zhang C, Lin Z, Feng W, Zhang Q

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Gastric cancer (GC) metastasis remains a major cause of poor prognosis, yet its molecular drivers are poorly understood.

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APA Liu W, Li Y, et al. (2025). EGR4 transcriptionally upregulates GDF15 to promote gastric cancer metastasis.. Cell death & disease, 16(1), 807. https://doi.org/10.1038/s41419-025-08095-w
MLA Liu W, et al.. "EGR4 transcriptionally upregulates GDF15 to promote gastric cancer metastasis.." Cell death & disease, vol. 16, no. 1, 2025, pp. 807.
PMID 41203604

Abstract

Gastric cancer (GC) metastasis remains a major cause of poor prognosis, yet its molecular drivers are poorly understood. Here, we integrated single-cell RNA sequencing (scRNA-seq) of primary tumors and matched metastatic lymph nodes from six GC patients to identify a metastatic epithelial subpopulation characterized by EGR4 overexpression. Kaplan-Meier analysis revealed that high EGR4 expression correlated with reduced survival in GC patients. Mechanistically, chromatin immunoprecipitation sequencing (ChIP-seq) and luciferase assays demonstrated that EGR4 directly bound to the GDF15 promoter, driving its transcriptional activation. Functional studies showed that EGR4 promoted migration and metastasis via GDF15-mediated ErbB3/ErbB1 hetero-dimerization, which activated PI3K/AKT and MAPK/ERK pathways. Furthermore, CellChat analysis identified robust interactions between EGR4 GC cells and cancer-associated fibroblasts (CAFs), particularly extracellular matrix (ECM)-remodeling eCAFs. Secreted GDF15 induced CAF activation through TGF-β receptor signaling, creating a pro-metastatic niche. Collectively, our study establishes the EGR4/GDF15 axis as a critical driver of GC metastasis, offering possible therapeutic targets for intervention.

MeSH Terms

Humans; Growth Differentiation Factor 15; Stomach Neoplasms; Cell Line, Tumor; Up-Regulation; Gene Expression Regulation, Neoplastic; Neoplasm Metastasis; Animals; Cell Movement; Signal Transduction; Mice; Cancer-Associated Fibroblasts; Promoter Regions, Genetic; Female; Male; Transcriptional Activation

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