DNA damage and p53-mediated cell cycle arrest: A reevaluation
- 24 December 1996
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (26) , 15209-15214
- https://doi.org/10.1073/pnas.93.26.15209
Abstract
Most mammalian cells exhibit transient delays in the G1 and G2 phases of the cell cycle after treatment with radiation or radiomimetic compounds. p53 is required for the arrest in G1, which provides time for DNA repair. Recently, a role of p53 in the G2/M transition has also been suggested. However, it has been reported that the presence of functional p53 does not always correlate with the induction of these checkpoints. To precisely assess the role of p53 in activating cell cycle checkpoints and in cell survival after radiation, we studied the response of two isogenic human fibrosarcoma cell lines differing in their p53 status (wild type or mutant). We found that when irradiated cells undergo a wild-type p53-dependent G1 arrest, they do not subsequently arrest in G2. Moreover, wild-type p53 cells irradiated past the G1 checkpoint arrest in G2 but do not delay in the subsequent G1 phase. Furthermore, in these cell lines, which do not undergo radiation-induced apoptosis, the wild-type p53 cell line exhibited a greater radioresistance in terms of clonogenic survival. These results suggest that the two checkpoints may be interrelated, perhaps through a control system that determines, depending on the extent of the damage, whether the cell needs to arrest cell cycle progression at the subsequent checkpoint for further repair. p53 could be a crucial component of this control system.Keywords
This publication has 38 references indexed in Scilit:
- Loss of oncogenic ras expression does not correlate with loss of tumorigenicity in human cells.Proceedings of the National Academy of Sciences, 1996
- Cell cycle synchrony unmasks the influence of p53 function on radiosensitivity of human glioblastoma cells.1996
- Loss of normal p53 function confers sensitization to Taxol by increasing G2/M arrest and apoptosisNature Medicine, 1996
- p21 is necessary for the p53-mediated G1 arrest in human cancer cells.1995
- Diminished capacity for p53 in mediating a radiation-induced G1 arrest in established human tumor cell lines.1995
- p53 controls both the G2/M and the G1 cell cycle checkpoints and mediates reversible growth arrest in human fibroblasts.Proceedings of the National Academy of Sciences, 1995
- p53 modulation of TFIIH–associated nucleotide excision repair activityNature Genetics, 1995
- p53, guardian of the genomeNature, 1992
- Participation of p53 protein in the cellular response to DNA damage.1991
- Checkpoints: Controls That Ensure the Order of Cell Cycle EventsScience, 1989