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PMID: 7724543 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

p53-dependent growth arrest of REF52 cells containing newly amplified DNA.

Ishizaka Y, Chernov MV, Burns CM, Stark GR

Abstract

The rat cell line REF52 is not permissive for gene amplification. Simian virus 40 tumor (T) antigen converts these cells to a permissive state, as do dominant negative mutants of p53, suggesting that the effect of T antigen is due mainly to its ability to bind to p53. To manipulate permissivity, we introduced a temperature-sensitive mutant of T antigen (tsA58) into REF52 cells and selected for resistance to N-(phosphonacetyl)-L-aspartate (PALA). Most freshly isolated PALA-resistant colonies, each of approximately 200 cells, selected at a permissive temperature, arrested when shifted to a nonpermissive temperature. Growth arrest was stable, with no evidence of apoptosis, as long as T antigen was absent but was reversed when T antigen was restored. In contrast, PALA-resistant clones grown to approximately 10(7) cells at a permissive temperature did not arrest when shifted to a nonpermissive temperature. All PALA-resistant clones examined had amplified carbamoyl-phosphate synthetase-aspartate transcarbamoylase-dihydroorotase (CAD) genes, present in structures consistent with a mechanism involving bridge-breakage-fusion (BBF) cycles. We propose that p53-mediated growth arrest operates only early during the complex process of gene amplification, when newly formed PALA-resistant cells contain broken DNA, generated in BBF cycles. During propagation under permissive conditions, the broken DNA ends are healed, and, even though the p53-mediated pathway is still intact at a nonpermissive temperature and the cells contain amplified DNA, they are not arrested in the absence of broken DNA. The data support the hypothesis that BBF cycles are an important mechanism of amplification and that the broken DNA generated in each cycle is a key signal that regulates permissivity for gene amplification.

MeSH Terms
Animals Antigens, Viral, Tumor/genetics,physiology Aspartate Carbamoyltransferase Aspartic Acid/analogs & derivatives,pharmacology Carbamyl Phosphate/metabolism Cell Cycle/genetics,physiology Cell Line Cyclin-Dependent Kinase Inhibitor p21 Cyclins/genetics DNA Damage DNA Replication Dihydroorotase Drug Resistance Gene Amplification Hot Temperature In Situ Hybridization, Fluorescence Ligases/genetics Mutation Phosphonoacetic Acid/analogs & derivatives,pharmacology RNA, Messenger/biosynthesis Rats Recombinant Proteins Selection, Genetic Simian virus 40/genetics Tumor Suppressor Protein p53/physiology
Chemicals
Antigens, Viral, Tumor Cdkn1a protein, rat Cyclin-Dependent Kinase Inhibitor p21 Cyclins RNA, Messenger Recombinant Proteins Tumor Suppressor Protein p53 Aspartic Acid Carbamyl Phosphate sparfosic acid Aspartate Carbamoyltransferase Dihydroorotase Ligases Phosphonoacetic Acid
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Ishizaka Y
Department of Molecular Biology, Cleveland Clinic Foundation, OH 44195, USA.
Chernov M V
Burns C M
Stark G R
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1995-04-11
Pages
3224-8
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC42138
Subset
IM
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