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E2F1-Associated Purine Synthesis Pathway Is a Major Component of the MET-DNA Damage Response Network

Cancer Research Communications, ISSN: 2767-9764, Vol: 4, Issue: 7, Page: 1863-1880
2024
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Article Description

Various lines of investigation support a signaling interphase shared by receptor tyrosine kinases and the DNA damage response. However, the underlying network nodes and their contribution to the maintenance of DNA integrity remain unknown. We explored MET-related metabolic pathways in which interruption compromises proper resolution of DNA damage. Discovery metabolomics combined with transcriptomics identified changes in pathways relevant to DNA repair following MET inhibition (METi). METi by tepotinib was associated with the formation of γH2AX foci and with significant alterations in major metabolic circuits such as glycolysis, gluconeogenesis, and purine, pyrimidine, amino acid, and lipid metabolism. 5-Phosphoribosyl-N-formylglycinamide, a de novo purine synthesis pathway metabolite, was consistently decreased in in vitro and in vivo MET-dependent models, and METi-related depletion of dNTPs was observed. METi instigated the downregulation of critical purine synthesis enzymes including phosphoribosylglycinamide for-myltransferase, which catalyzes 5-phosphoribosyl-N-formylglycinamide synthesis. Genes encoding these enzymes are regulated through E2F1, whose levels decrease upon METi in MET-driven cells and xenografts. Transient E2F1 overexpression prevented dNTP depletion and the concomitant METi-associated DNA damage in MET-driven cells. We conclude that DNA damage following METi results from dNTP reduction via downregulation of E2F1 and a consequent decline of de novo purine synthesis.

Bibliographic Details

Poliaková Turan, Michaela; Riedo, Rahel; Medo, Matúš; Pozzato, Chiara; Friese-Hamim, Manja; Koch, Jonas P; Coggins, Si'Ana A; Li, Qun; Kim, Baek; Albers, Joachim; Aebersold, Daniel M; Zamboni, Nicola; Zimmer, Yitzhak; Medová, Michaela

American Association for Cancer Research (AACR)

Medicine; Biochemistry, Genetics and Molecular Biology

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