Stabilization of p53 and transactivation of its target genes in response to replication blockade
- 9 October 2002
- journal article
- research article
- Published by Springer Nature in Oncogene
- Vol. 21 (47) , 7226-7229
- https://doi.org/10.1038/sj.onc.1205889
Abstract
Although it is clear that p53 plays a pivotal role in G1/G2 checkpoints to conserve genomic integrity, its role in S phase checkpoint is less well understood. Recently, it has been reported that p53 is transcriptionally impaired even though it is stabilized during replication blockade. However, the mechanisms underlying this phenomenon are not known. In the present study, it has been shown that p53 accumulates and transactivates its target genes such as p21, gadd45 and bax in response to replication blockade in normal and cancer cells. Lack of transcriptional activation under similar conditions in cells lacking p53 shows that p53-target gene activation during replication blockade is indeed p53-dependent. Further, transactivation of p21 in response to replication blockade by hydroxyurea and aphidicolin is similar to that in response to ionizing radiation except that the latter is more immediate compared to the response to replication blockade. These findings suggest that impairment of transcriptionally active p53 in response to replication blockade is not a general phenomenon.Keywords
This publication has 28 references indexed in Scilit:
- Gene expression profiling of HeLa cells in G1 or G2 phasesOncogene, 2002
- Why Is p53 Acetylated?Cell, 2001
- p53 inhibits entry into mitosis when DNA synthesis is blockedOncogene, 1999
- Requirement for p53 and p21 to Sustain G 2 Arrest After DNA DamageScience, 1998
- Is a p53-Regulated Inhibitor of G2/M ProgressionMolecular Cell, 1997
- Cell cycle re-entry following chemically-induced cell cycle synchronization leads to elevated p53 and p21 protein levelsOncogene, 1997
- p53: puzzle and paradigm.Genes & Development, 1996
- Radiation-induced cell cycle arrest compromised by p21 deficiencyNature, 1995
- Human Papillomavirus E6 and E7: Proteins which deregulate the cell cycleBioEssays, 1995
- Basal promoter elements as a selective determinant of transcriptional activator functionNature, 1995