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PMID: 7757991 Published · ppublish English Comparative Study Journal Article

Relationships between G1 arrest and stability of the p53 and p21Cip1/Waf1 proteins following gamma-irradiation of human lymphoma cells.

Cancer research ·Vol. 55 ·No. 11 ·1995-06-01 ·Pages 2387-93

Bae I, Fan S, Bhatia K, Kohn KW, Fornace AJ, O'Connor PM

Abstract

We investigated temporal relationships between ionizing radiation-induced G1 arrest and induction of the p53-regulated genes GADD45, CIP1/WAF1, and MDM2 in a series of Burkitt's lymphoma and lymphoblastoid cell lines that differed in p53 gene status. Emphasis was placed on characterization of the EW36 cell line, which despite expressing wild-type p53 genes, is defective in G1 arrest following gamma-irradiation (P. M. O'Connor et al., Cancer Res., 53: 4776-4780, 1993). Induction of CIP1/WAF1, GADD45, and to a lesser extent MDM2 mRNA was observed in all wild-type p53 lines that arrested in G1. Cell lines that contained only mutant p53 genes or were heterozygous for p53 mutations failed to induce appreciable levels of these p53-regulated transcripts and did not arrest in G1. G1 arrest in the wild-type p53 cell line WMN was more prolonged than elevation of CIP1/WAF1, GADD45, or MDM2 transcripts, suggesting that G1 arrest duration must be dependent upon stability of these newly synthesized proteins. In agreement, we found that p21Cip1/Waf1, a potent inhibitor of G1-S phase cyclin-dependent kinases, was maintained at elevated levels throughout the period that WMN cells remained arrested in G1. EW36 cells exhibited normal induction of CIP1/WAF1, GADD45, and MDM2 mRNA following gamma-irradiation, suggesting that the defect in G1 arrest must reside downstream of p53 transactivation. Investigations into the stability of p53 and p21Cip1/Waf1 revealed that EW36 cells failed to maintain elevated levels of these proteins following irradiation. p53 levels decreased within 4 h of irradiation, and p21Cip1/Waf1 levels decreased shortly after the normal decline of CIP1/WAF1 mRNA levels. Degradation of p21Cip1/Waf1 coincided with the escape of EW36 cells from G1 arrest. Our studies suggest that p21Cip1/Waf1 stability may determine G1 arrest duration and that premature degradation of this protein could provide an alternative route to subversion of the G1 checkpoint in cancer cells.

Related Genes
MeSH Terms
Burkitt Lymphoma/genetics,pathology,radiotherapy Cell Line Cyclin-Dependent Kinase Inhibitor p21 Cyclins/biosynthesis,physiology,radiation effects Drug Stability G1 Phase/physiology,radiation effects Gamma Rays/therapeutic use Gene Expression Regulation, Neoplastic/radiation effects Genes, p53 Humans Intracellular Signaling Peptides and Proteins Lymphocytes/cytology,physiology,radiation effects Nuclear Proteins Protein Biosynthesis Proteins/genetics Proto-Oncogene Proteins/biosynthesis,genetics Proto-Oncogene Proteins c-mdm2 RNA, Messenger/genetics,metabolism Transcription, Genetic/radiation effects Tumor Cells, Cultured/radiation effects Tumor Suppressor Protein p53/physiology,radiation effects
Chemicals
CDKN1A protein, human Cyclin-Dependent Kinase Inhibitor p21 Cyclins GADD45 protein Intracellular Signaling Peptides and Proteins Nuclear Proteins Proteins Proto-Oncogene Proteins RNA, Messenger Tumor Suppressor Protein p53 MDM2 protein, human Proto-Oncogene Proteins c-mdm2
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Bae I
Laboratory of Molecular Pharmacology, National Cancer Institute, NIH, Bethesda, Maryland 20892, USA.
Fan S
Bhatia K
Kohn K W
Fornace A J
O'Connor P M
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
0008-5472
Published
1995-06-01
Pages
2387-93
Language
English
Region
United States
NLM ID
2984705R
Subset
IM
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