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Publication : Reversal of female infertility by Chk2 ablation reveals the oocyte DNA damage checkpoint pathway.

First Author  Bolcun-Filas E Year  2014
Journal  Science Volume  343
Issue  6170 Pages  533-6
PubMed ID  24482479 Mgi Jnum  J:207474
Mgi Id  MGI:5558970 Doi  10.1126/science.1247671
Citation  Bolcun-Filas E, et al. (2014) Reversal of female infertility by Chk2 ablation reveals the oocyte DNA damage checkpoint pathway. Science 343(6170):533-6
abstractText  Genetic errors in meiosis can lead to birth defects and spontaneous abortions. Checkpoint mechanisms of hitherto unknown nature eliminate oocytes with unrepaired DNA damage, causing recombination-defective mutant mice to be sterile. Here, we report that checkpoint kinase 2 (Chk2 or Chek2), is essential for culling mouse oocytes bearing unrepaired meiotic or induced DNA double-strand breaks (DSBs). Female infertility caused by a meiotic recombination mutation or irradiation was reversed by mutation of Chk2. Both meiotically programmed and induced DSBs trigger CHK2-dependent activation of TRP53 (p53) and TRP63 (p63), effecting oocyte elimination. These data establish CHK2 as essential for DNA damage surveillance in female meiosis and indicate that the oocyte DSB damage response primarily involves a pathway hierarchy in which ataxia telangiectasia and Rad3-related (ATR) signals to CHK2, which then activates p53 and p63.
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