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PMID: 18323444 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't Review

An oncogene-induced DNA damage model for cancer development.

Science (New York, N.Y.) ·Vol. 319 ·No. 5868 ·2008-03-07 ·Pages 1352-5

Halazonetis TD, Gorgoulis VG, Bartek J

Abstract

Of all types of DNA damage, DNA double-strand breaks (DSBs) pose the greatest challenge to cells. One might have, therefore, anticipated that a sizable number of DNA DSBs would be incompatible with cell proliferation. Yet recent experimental findings suggest that, in both precancerous lesions and cancers, activated oncogenes induce stalling and collapse of DNA replication forks, which in turn leads to formation of DNA DSBs. This continuous formation of DNA DSBs may contribute to the genomic instability that characterizes the vast majority of human cancers. In addition, in precancerous lesions, these DNA DSBs activate p53, which, by inducing apoptosis or senescence, raises a barrier to tumor progression. Breach of this barrier by various mechanisms, most notably by p53 mutations, that impair the DNA damage response pathway allows cancers to develop. Thus, oncogene-induced DNA damage may explain two key features of cancer: genomic instability and the high frequency of p53 mutations.

MeSH Terms
Cell Proliferation DNA Breaks, Double-Stranded DNA Damage DNA Replication Disease Progression Genes, p53 Genomic Instability Humans Models, Biological Mutation Neoplasms/genetics,pathology,physiopathology Oncogenes Precancerous Conditions/genetics,pathology,physiopathology Tumor Suppressor Protein p53/metabolism
Chemicals
Tumor Suppressor Protein p53
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Halazonetis Thanos D
Department of Molecular Biology and Department of Biochemistry, University of Geneva, CH-1205 Geneva, Switzerland. [email protected]
Gorgoulis Vassilis G
Bartek Jiri
Article Info
Journal
Science (New York, N.Y.)
Abbr.
Science
ISSN
1095-9203
Published
2008-03-07
Pages
1352-5
Language
English
Region
United States
NLM ID
0404511
Subset
IM
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