Genomic instability and radiation
- 1 June 2003
- journal article
- review article
- Published by IOP Publishing in Journal of Radiological Protection
- Vol. 23 (2) , 173-181
- https://doi.org/10.1088/0952-4746/23/2/304
Abstract
Genomic instability is a hallmark of cancer cells, and is thought to be involved in the process of carcinogenesis. Indeed, a number of rare genetic disorders associated with a predisposition to cancer are characterised by genomic instability occurring in somatic cells. Of particular interest is the observation that transmissible instability can be induced in somatic cells from normal individuals by exposure to ionising radiation, leading to a persistent enhancement in the rate at which mutations and chromosomal aberrations arise in the progeny of the irradiated cells after many generations of replication. If such induced instability is involved in radiation carcinogenesis, it would imply that the initial carcinogenic event may not be a rare mutation occurring in a specific gene or set of genes. Rather, radiation may induce a process of instability in many cells in a population, enhancing the rate at which the multiple gene mutations necessary for the development of cancer may arise in a given cell lineage. Furthermore, radiation could act at any stage in the development of cancer by facilitating the accumulation of the remaining genetic events required to produce a fully malignant tumour. The experimental evidence for such induced instability is reviewed.Keywords
This publication has 38 references indexed in Scilit:
- The Fanconi anaemia/BRCA pathwayNature Reviews Cancer, 2003
- c-Myc Can Induce DNA Damage, Increase Reactive Oxygen Species, and Mitigate p53 FunctionMolecular Cell, 2002
- Impact of Cancer Predisposition and Radiosensitivity on the Population Risk of Radiation-Induced CancersRadiation Research, 2001
- Selective Inactivation of p53 Facilitates Mouse Epithelial Tumor Progression without Chromosomal InstabilityMolecular and Cellular Biology, 2001
- Effects of DNA nonhomologous end-joining factors on telomere length and chromosomal stability in mammalian cellsCurrent Biology, 2001
- Chromosomal stability and the DNA double-stranded break connectionNature Reviews Genetics, 2001
- Gene Amplification in a p53-Deficient Cell Line Requires Cell Cycle Progression under Conditions That Generate DNA BreakageMolecular and Cellular Biology, 1998
- Tropospheric Chemistry and TransportScience, 1997
- p53-deficient mice are extremely susceptible to radiation-induced tumorigenesisNature Genetics, 1994
- Mice deficient for p53 are developmentally normal but susceptible to spontaneous tumoursNature, 1992