Number of the records: 1
Non-bioenergetic roles of mitochondrial GPD2 promote tumor progression
- 1.0572138 - BTÚ 2024 RIV AU eng J - Journal Article
Oh, S. - Jo, S. - Bajzikova, M. - Kim, H. S. - Dao, T. T. P. - Rohlena, Jakub - Kim, J. - Neužil, Jiří - Park, S.
Non-bioenergetic roles of mitochondrial GPD2 promote tumor progression.
Theranostics. Roč. 13, č. 2 (2023), s. 438-457. ISSN 1838-7640. E-ISSN 1838-7640
R&D Projects: GA ČR(CZ) GA20-05942S; GA ČR(CZ) GX21-04607X; GA ČR(CZ) GA20-18513S
Institutional support: RVO:86652036
Keywords : cancer * mitochondria * gpd2 * dhap * ether lipids
OECD category: Cell biology
Impact factor: 12.4, year: 2022
Method of publishing: Open access
https://www.thno.org/v13p0438.htm
Rationale: Despite growing evidence for mitochondria's involvement in cancer, the roles of specific metabolic components outside the respiratory complex have been little explored. We conducted metabolomic studies on mitochondrial DNA (mtDNA)-deficient (rho 0) cancer cells with lower proliferation rates to clarify the undefined roles of mitochondria in cancer growth.Methods and results: Despite extensive metabolic downregulation, rho 0 cells exhibited high glycerol-3phosphate (G3P) level, due to low activity of mitochondrial glycerol-3-phosphate dehydrogenase (GPD2). Knockout (KO) of GPD2 resulted in cell growth suppression as well as inhibition of tumor progression in vivo. Surprisingly, this was unrelated to the conventional bioenergetic function of GPD2. Instead, multi-omics results suggested major changes in ether lipid metabolism, for which GPD2 provides dihydroxyacetone phosphate (DHAP) in ether lipid biosynthesis. GPD2 KO cells exhibited significantly lower ether lipid level, and their slower growth was rescued by supplementation of a DHAP precursor or ether lipids. Mechanistically, ether lipid metabolism was associated with Akt pathway, and the downregulation of Akt/mTORC1 pathway due to GPD2 KO was rescued by DHAP supplementation.Conclusion: Overall, the GPD2-ether lipid-Akt axis is newly described for the control of cancer growth. DHAP supply, a non-bioenergetic process, may constitute an important role of mitochondria in cancer.
Permanent Link: https://hdl.handle.net/11104/0343304
Number of the records: 1