Department of Integrative Biotechnology, College of Biotechnology and Bioengineering, Sungkyunkwan University, Suwon, South Korea.
Division of Radiation Cancer Research, Korea Institute of Radiological and Medical Sciences, Seoul, South Korea.
Biol Reprod. 2018 Oct 1;99(4):798-805. doi: 10.1093/biolre/ioy108.
Maternal DNA damage during meiosis causes genetic abnormalities that can lead to infertility, birth defects, and abortion. While DNA damage can rapidly halt cell cycle progression and promote DNA repair in somatic cells, mammalian oocytes are unable to mount a robust G2/prophase arrest in response to DNA damage unless damage levels are severe. Here, we show that inhibition of WIP1 phosphatase enhances the ability of oocytes to respond to DNA damage. We found that WIP1 was expressed constantly during meiotic maturation, and that inhibition of WIP1 activity did not impair meiotic maturation. However, oocytes in G2/prophase were sensitized to DNA damage following WIP1 inhibition, not only increasing γ-H2AX level and ATM phosphorylation, but also decreasing entry into meiosis. Moreover, WIP1 inhibition significantly promoted the repair of damaged DNA during G2/prophase arrest, suggesting that WIP1 suppresses DNA repair in oocytes. Therefore, our results suggest that WIP1 is a key suppressor of the DNA damage response during G2/prophase arrest in mouse oocytes.
减数分裂过程中的母体 DNA 损伤会导致遗传异常,从而导致不孕、出生缺陷和流产。虽然 DNA 损伤可以迅速停止细胞周期的进展并促进体细胞中的 DNA 修复,但哺乳动物卵母细胞无法对 DNA 损伤做出强烈的 G2/前期阻滞,除非损伤水平非常严重。在这里,我们表明抑制 WIP1 磷酸酶可以增强卵母细胞对 DNA 损伤的反应能力。我们发现 WIP1 在减数分裂成熟过程中持续表达,并且抑制 WIP1 活性不会损害减数分裂成熟。然而,在 WIP1 抑制后,G2/前期的卵母细胞对 DNA 损伤变得敏感,不仅增加了 γ-H2AX 水平和 ATM 磷酸化,而且还减少了进入减数分裂的数量。此外,WIP1 抑制显著促进了 G2/前期阻滞期间受损 DNA 的修复,表明 WIP1 抑制了卵母细胞中的 DNA 修复。因此,我们的结果表明,WIP1 是小鼠卵母细胞 G2/前期阻滞中 DNA 损伤反应的关键抑制因子。