NUDT22 promotes cancer growth through pyrimidine salvage.
Melanie WalterFlorian MayrBishoy M F HannaVictoria CooksonOliver MortusewiczThomas HelledayPatrick HerrPublished in: Oncogene (2023)
The NUDIX hydrolase NUDT22 converts UDP-glucose into glucose-1-phosphate and the pyrimidine nucleotide uridine monophosphate but a biological significance for this biochemical reaction has not yet been established. Glucose-1-phosphate is an important metabolite for energy and biomass production through glycolysis and nucleotides required for DNA replication are produced through energetically expensive de novo or energy-efficient salvage pathways. Here, we describe p53-regulated pyrimidine salvage through NUDT22-dependent hydrolysis of UDP-glucose to maintain cancer cell growth and to prevent replication stress. NUDT22 expression is consistently elevated in cancer tissues and high NUDT22 expression correlates with worse survival outcomes in patients indicating an increased dependency of cancer cells to NUDT22. Furthermore, we show that NUDT22 transcription is induced after inhibition of glycolysis, MYC-mediated oncogenic stress, and DNA damage directly through p53. NUDT22-deficient cancer cells suffer from growth retardation, S-phase delay, and slower DNA replication fork speed. Uridine supplementation rescues replication fork progression and alleviates replication stress and DNA damage. Conversely, NUDT22 deficiency sensitizes cells to de novo pyrimidine synthesis inhibition in vitro and reduces cancer growth in vivo. In conclusion, NUDT22 maintains pyrimidine supply in cancer cells and depletion of NUDT22 leads to genome instability. Targeting NUDT22 therefore has high potential for therapeutic applications in cancer therapy.
Keyphrases
- dna damage
- papillary thyroid
- cancer therapy
- squamous cell
- end stage renal disease
- transcription factor
- blood glucose
- chronic kidney disease
- gene expression
- induced apoptosis
- dna repair
- newly diagnosed
- dna methylation
- peritoneal dialysis
- type diabetes
- cell proliferation
- childhood cancer
- genome wide
- drug delivery
- cell death
- binding protein
- insulin resistance
- cell cycle arrest
- stress induced
- endoplasmic reticulum stress
- patient reported
- drug induced
- smoking cessation
- prognostic factors