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PMID: 9639667 Published · ppublish English Journal Article

Caffeine does not potentiate gamma-radiation induced DNA damage in ataxia telangiectasia lymphoblastoid cells.

Mutation research ·Vol. 401 ·No. 1-2 ·1998-06-05 ·Pages 27-32

Bebb DG, Steele PP, Warrington PJ, Moffat JA, Glickman BW

Abstract

Ataxia telangiectasia (AT) cells display a profound sensitivity to ionizing radiation, exhibiting more frequent chromosomal breaks, increased micronuclei formation and abnormal DNA repair kinetics following exposure. Despite the recent cloning of the ATM gene there remains a need for a simple and rapid means of discriminating AT heterozygotes from normal individuals. Caffeine (1,3,7-trimethyl xanthine), known to inhibit the repair of double-strand DNA breaks following ionizing radiation, increases the frequency of radiation induced chromosomal breaks in normal cells. Here we report that caffeine potentiates the induction of chromosomal breaks in G2 arrested AT heterozygote and normal lymphoblastoid cells, but not in homozygous AT lymphoblastoid cells. This observation parallels the findings reported by others that caffeine fails to potentiate the effect of ionizing radiation in radiation-sensitive yeast strains and radiation sensitive CHO cells. It also suggests that caffeine may somehow mimic the effect of the ATM gene product in normal cells. We also report that caffeine is unlikely to be useful in helping to discriminate AT heterozygotes from normal individuals.

MeSH Terms
Ataxia Telangiectasia/genetics Caffeine/pharmacology Cell Line DNA/drug effects,radiation effects DNA Damage DNA Repair Female Gamma Rays Heterozygote Humans Kinetics Lymphocytes/drug effects,radiation effects Male Micronucleus Tests
Chemicals
Caffeine DNA
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Bebb D G
Centre for Environmental Health, Department of Biology, University of Victoria, P.O. Box 3020, Victoria, BC, Canada.
Steele P P
Warrington P J
Moffat J A
Glickman B W
Article Info
Journal
Mutation research
Abbr.
Mutat Res
ISSN
0027-5107
Published
1998-06-05
Pages
27-32
Language
English
Region
Netherlands
NLM ID
0400763
Subset
IM
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