ArticleCancer & metabolism2025
GDF15-mediated enhancement of the Warburg effect sustains multiple myeloma growth via TGFβ signaling pathway.
Article in Cancer & metabolism, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 5 papers.
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Who cites it
5 citing papers in PubMed.
- The NSDHL/c-Myc/PKM2 Axis Drives Glycolytic Reprogramming and Tumor Growth in Multiple Myeloma.International journal of molecular sciences · 2026Article
- GDF15: A Hijacked Metabo-Hormone Orchestrating Cachexia and Immunosuppression in Cancer.Biomolecules · 2026Review
- Research progress on the biological function and molecular mechanism of GDF-15 in solid malignant tumors.World journal of surgical oncology · 2026Review
- Early Detection of Prostate Cancer Using Novel ELISA-Based Biomarkers: Insights into Inflammatory and Tumor-Specific Pathways.Asian Pacific journal of cancer prevention : APJCP · 2025Article
- A rare dermatological manifestation of follicular spicules in a patient with multiple myeloma and end-stage renal disease on hemodialysis: A case report.Experimental and therapeutic medicine · 2025Article
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Authors and funding
4 authors.
Funding
Abstract
The Warburg effect, characterized by the shift toward aerobic glycolysis, is closely associated with the onset and advancement of tumors, including multiple myeloma (MM). Nevertheless, the specific regulatory mechanisms of glycolysis in MM and its functional role remain unclear. In this study, we identified that growth differentiation factor 15 (GDF15) is a glycolytic regulator, and GDF15 is highly expressed in MM cells and patient samples. Through gain-of-function and loss-of-function experiments, we demonstrated that GDF15 promotes MM cell proliferation and inhibits apoptosis. Moreover, GDF15 enhances Warburg-like metabolism in MM cells, as evidenced by increased glucose uptake, lactate production, and extracellular acidification rate, while reducing oxidative phosphorylation. Importantly, the tumor-promoting effects of GDF15 in MM cells are fermentation-dependent. Mechanistically, GDF15 was found to promote the expression of key glycolytic genes, particularly the glucose transporter GLUT1, through the activation of the TGFβ signaling pathway. Pharmacological inhibition of the TGFβ signaling pathway effectively abrogated the oncogenic activities of GDF15 in MM cells, including cell proliferation, apoptosis, and fermentation. In vivo experiments using a subcutaneous xenotransplanted tumor model confirmed that GDF15 knockdown led to a significant reduction in tumor growth, while GDF15 overexpression promoted tumor growth. Overall, our study provides insights into the molecular mechanisms underlying MM pathogenesis and highlights the potential of targeting GDF15-TGFβ signaling -glycolysis axis as a therapeutic approach for future therapeutic interventions in MM.
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