Ku affects the CHK1-dependent G(2) checkpoint after ionizing radiation Journal Article


Authors: Wang, X.; Li, G. C.; Iliakis, G.; Wang, Y.
Article Title: Ku affects the CHK1-dependent G(2) checkpoint after ionizing radiation
Abstract: There are two major pathways for repairing DNA double strand breaks in mammalian cells: nonhomologous end joining (NHEJ) and homologous recombination repair (HRR). The nonhomologous end joining repair is deficient in cells without Ku, whereas HRR is highly efficient in such cells compared with their wild-type counterparts. The mechanism remains unclear. We reported previously that Ku80(-/-) cells show a stronger ATM-dependent S-phase checkpoint response than Ku80(+/+) cells after ionizing radiation (IR; X-Y. Zhou et al., Oncogene, 21:6377-6381, 2002). We report in this study that Ku80(-/-) cells also show a much stronger G(2) accumulation than Ku80(+/+) cells after IR. The stronger G(2) checkpoint response in Ku80(-/-) cells is ATM independent but is accompanied with a higher activity of CHK1 kinase. Treatment with Chk1 antisense oligonucleotide abolishes the stronger G(2) checkpoint response and sensitizes Ku80(-/-) cells to IR. These data indicate that the stronger G2 checkpoint response shown in Ku80(-/-) cells is CHK1 dependent and suggest that the CHK1-dependent checkpoint response contributes to the highly efficient HRR in such cells.
Keywords: radiosensitizing agent; atm; recombination; cells; strand break repair; inhibition; s-phase; dna-damage checkpoint; protein-kinase; dependent; homologous recombinational repair; v(d)j
Journal Title: Cancer Research
Volume: 62
Issue: 21
ISSN: 0008-5472
Publisher: American Association for Cancer Research  
Date Published: 2002-11-01
Start Page: 6031
End Page: 6034
Language: English
ACCESSION: WOS:000179062400008
PROVIDER: wos
PUBMED: 12414624
Notes: Article -- Source: Wos
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MSK Authors
  1. Gloria C Li
    132 Li