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PMID: 15148355 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Enhanced fidelity for rejoining radiation-induced DNA double-strand breaks in the G2 phase of Chinese hamster ovary cells.

Nucleic acids research ·Vol. 32 ·No. 9 ·2004-00-00 ·Pages 2677-84

Krüger I, Rothkamm K, Löbrich M

Abstract

The influence of cell cycle phase on the fidelity of DNA double-strand break (DSB) repair is largely unknown. We investigated the rejoining of correct and incorrect DSB ends in synchronized populations of Chinese hamster ovary cells irradiated with 80 Gy X-rays. A specialized pulsed-field gel electrophoresis assay based on quantitative Southern hybridization of individual large restriction fragments was employed to measure correct DSB rejoining by monitoring restriction fragment reconstitution. Total DSB repair, representing both correct and incorrect rejoining, was analyzed using conventional pulsed-field gel electrophoresis. We present evidence that restriction fragment reconstitution is more efficient in G2 than in G1, suggesting that DSB rejoining in G2 proceeds with higher fidelity. DNA-dependent protein kinase-deficient V3 and xrs-6 cells show impaired restriction fragment reconstitution in G1 and G2 compared with wild-type AA8 and K1 cells, demonstrating that the enhanced fidelity of DSB rejoining in G2 occurs by non- homologous end joining. Additionally, homologous recombination-deficient irs1SF and wild-type cells show identical DSB rejoining in G1 and G2. We propose that structural characteristics of G2 phase chromatin, such as the cohesion of sister chromatids in replicated chromatin, limit the mobility of radiation-induced break ends and enhance the fidelity of DSB rejoining.

MeSH Terms
Animals Blotting, Southern CHO Cells Chromatin/chemistry,genetics,metabolism,radiation effects Cricetinae DNA/chemistry,genetics,metabolism,radiation effects DNA Damage/radiation effects DNA Repair/radiation effects DNA-Activated Protein Kinase DNA-Binding Proteins Female G1 Phase/radiation effects G2 Phase/radiation effects Mutation/genetics Protein Serine-Threonine Kinases/deficiency,genetics X-Rays
Chemicals
Chromatin DNA-Binding Proteins DNA DNA-Activated Protein Kinase Protein Serine-Threonine Kinases
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Krüger Ines
Fachrichtung Biophysik, Universität des Saarlandes, D-66421 Homburg/Saar, Germany.
Rothkamm Kai
Löbrich Markus
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Article Info
Journal
Nucleic acids research
Abbr.
Nucleic Acids Res
ISSN
1362-4962
Published
2004-00-00
Epub
2004-00-17
Pages
2677-84
Language
English
Region
England
NLM ID
0411011
PMCID
PMC419594
Subset
IM
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