PubMed · 2001 · 139 citations · 14 references
Dna DamageCell DeathMolecular BiologyP53r2-dependent Dna SynthesisCell CycleTranscriptional RegulationCell RegulationDna SynthesisRadiation OncologyCancer ResearchGenome InstabilityOncogenic AgentDna ReplicationCell BiologyP53r2-dependent PathwayNatural SciencesTumor SuppressorP53r2 ProductMedicine
A recently identified ribonucleotide reductase (RR), p53R2, is directly regulated by p53 for supplying nucleotides to repair damaged DNA. We examined the role of this p53R2-dependent pathway for DNA synthesis in a p53-regulated cell cycle checkpoint, comparing it to R2-dependent DNA synthesis. The elevation of DNA synthesis activity through RR in response to gamma-irradiation was closely correlated with the level of expression of p53R2 but not of R2. The p53R2 product accumulated in nuclei, whereas R2 levels in cytoplasm decreased. We found a point mutation of p53R2 in cancer cell line HCT116, which resulted in loss of RR activity. In those cells, DNA damage-inducible apoptotic cell death was enhanced through transcriptional activation of p53AIP1. The results suggest that p53R2-dependent DNA synthesis plays a pivotal role in cell survival by repairing damaged DNA in the nucleus and that dysfunction of this pathway might result in activation of p53-dependent apoptosis to eliminate dangerous cells.
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From RNA to DNA, Why So Many Ribonucleotide Reductases?
Peter Reichard · Science · 1993 · 530 citations
p53DINP1, a p53-Inducible Gene, Regulates p53-Dependent Apoptosis
Shu Okamura, Hirofumi Arakawa, Tomoaki Tanaka et al. · Molecular Cell · 2001 · 348 citations · Full text