Genotype-dependent radiosensitivity: Clonogenic survival, apoptosis and cell-cycle redistribution Journal Article


Authors: Williams, J. R.; Zhang, Y.; Zhou, H.; Russell, J.; Gridley, D. S.; Koch, C. J.; Little, J. B.
Article Title: Genotype-dependent radiosensitivity: Clonogenic survival, apoptosis and cell-cycle redistribution
Abstract: Purpose: We describe variations of three radiation-induced endpoints on the basis of cell genotype: Clonogenic survival, expression of apoptosis and cell-cycle redistribution. Methods: Clonogenic survival, apoptosis and cell-cycle redistribution are measured in multiple cell lines after exposure to radiation between 2 and 16 Gy. Cell lines varied in clonogenic radiosensitivity and expression of specific genes. Results: Clonal radiosensitivity is genotype-dependent, associating with four specific genes: A mutated form of Ataxia telangiectasia mutated (mutATM); with two forms of TP53, the gene that is template for tumor protein p53, wildtype TP53 (wtTP53) and mutated TP53 (mutTP53); and an unidentified gene in radioresistant glioblastoma cells. Apoptosis is also genotype-dependent showing elevated levels in cells that express mutATM and abrogated 14-3-3σ (an isoform of the 14-3-3 gene) but less variation for different forms of TP53. Cell-cycle redistribution varied in mutATM cells. Kinetics of apoptosis are biphasic for both time and dose; cell lines did not express apoptosis at doses below 5 Gy or times before 24 hours. Kinetics of cell-cycle redistribution changed dynamically in the first 24 hours but showed little change after that time. Conclusions: Clonogenic survival, radiation-induced apoptosis and radiation-induced redistribution in the cell-cycle vary with cell genotype, but not the same genotypes. There is temporal, not quantitative, correlation between apoptosis and clonal radiosensitivity with apoptosis suppressed by lower, less toxic doses of radiation (<5 Gy) but enabled after larger, more toxic doses. Kinetic patterns for apoptosis and redistribution show a common change at approximately 24 hours. © 2008 Informa UK Ltd.
Keywords: controlled study; gene mutation; human cell; mutation; dna-binding proteins; radiation dose; cell cycle proteins; cell survival; cell cycle; apoptosis; gene expression; molecular dynamics; cell line; genetic association; genetic variability; genotype; tumor cells, cultured; protein p53; radiation exposure; dose-response relationship, radiation; cloning, molecular; correlation analysis; kinetics; protein-serine-threonine kinases; quantitative analysis; gene identification; glioblastoma; tumor suppressor proteins; tumor cell; atm protein; tumor suppressor protein p53; radiosensitivity; cyclin dependent kinase inhibitor 1a; clonogenic assay; isoprotein; 14-3-3 proteins; genes, p53; stratifin; clonogenesis; ataxia telangiectasia; atm; radiation tolerance; tp53; protein 14 3 3; 14-3-3σ; cdkn1a; cell-cycle redistribution
Journal Title: International Journal of Radiation Biology
Volume: 84
Issue: 2
ISSN: 0955-3002
Publisher: Taylor & Francis Group Ltd.  
Date Published: 2008-01-01
Start Page: 151
End Page: 164
Language: English
DOI: 10.1080/09553000701797021
PUBMED: 18246483
PROVIDER: scopus
DOI/URL:
Notes: --- - "Cited By (since 1996): 7" - "Export Date: 17 November 2011" - "CODEN: IJRBA" - "Source: Scopus"
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  1. James Russell
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