Leem Jiyeon, Bai Guang-Yu, Kim Jae-Sung, Oh Jeong Su
Department of Integrative Biotechnology, Sungkyunkwan University, Suwon, South Korea.
Biomedical Institute for Convergence at SKKU (BICS), Sungkyunkwan University, Suwon, South Korea.
Front Cell Dev Biol. 2021 Dec 24;9:810928. doi: 10.3389/fcell.2021.810928. eCollection 2021.
If fertilization does not occur for a prolonged time after ovulation, oocytes undergo a time-dependent deterioration in quality and , referred to as postovulatory aging. The DNA damage response is thought to decline with aging, but little is known about how mammalian oocytes respond to the DNA damage during postovulatory aging. Here we show that increased WIP1 during postovulatory aging suppresses the capacity of oocytes to respond to and repair DNA damage. During aging, oocytes progressively lost their capacity to respond to DNA double-strand breaks, which corresponded with an increase in WIP1 expression. Increased WIP1 impaired the amplification of -H2AX signaling, which reduced the DNA repair capacity. WIP1 inhibition restored the DNA repair capacity, which prevented deterioration in oocyte quality and improved the fertilization and developmental competence of aged oocytes. Importantly, WIP1 was also found to be high in maternally aged oocytes, and WIP1 inhibition enhanced the DNA repair capacity of maternally aged oocytes. Therefore, our results demonstrate that increased WIP1 is responsible for the age-related decline in DNA repair capacity in oocytes, and WIP1 inhibition could restore DNA repair capacity in aged oocytes.
如果排卵后长时间未发生受精,卵母细胞的质量会随时间推移而恶化,这被称为排卵后老化。DNA损伤反应被认为会随着老化而下降,但关于哺乳动物卵母细胞在排卵后老化过程中如何应对DNA损伤却知之甚少。在此我们表明,排卵后老化过程中WIP1的增加会抑制卵母细胞对DNA损伤的反应和修复能力。在老化过程中,卵母细胞逐渐丧失对DNA双链断裂的反应能力,这与WIP1表达的增加相对应。WIP1的增加损害了γ-H2AX信号的放大,从而降低了DNA修复能力。抑制WIP1可恢复DNA修复能力,防止卵母细胞质量恶化,并提高老化卵母细胞的受精和发育能力。重要的是,还发现母源老化的卵母细胞中WIP1也很高,抑制WIP1可增强母源老化卵母细胞的DNA修复能力。因此,我们的结果表明,WIP1的增加是导致卵母细胞中与年龄相关的DNA修复能力下降的原因,抑制WIP1可恢复老化卵母细胞的DNA修复能力。