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首页> 外文期刊>Progress in Artificial Intelligence >Crosstalk between PTEN/PI3K/Akt Signalling and DNA Damage in the Oocyte: Implications for Primordial Follicle Activation, Oocyte Quality and Ageing
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Crosstalk between PTEN/PI3K/Akt Signalling and DNA Damage in the Oocyte: Implications for Primordial Follicle Activation, Oocyte Quality and Ageing

机译:PTEN / PI3K / AKT信号传导与卵母细胞中的DNA损伤之间的串扰:对原始卵泡激活,卵母细胞质量和老化的影响

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摘要

The preservation of genome integrity in the mammalian female germline from primordial follicle arrest to activation of growth to oocyte maturation is fundamental to ensure reproductive success. As oocytes are formed before birth and may remain dormant for many years, it is essential that defence mechanisms are monitored and well maintained. The phosphatase and tensin homolog of chromosome 10 (PTEN)/phosphatidylinositol 3-kinase (PI3K)/protein kinase B (PKB, Akt) is a major signalling pathway governing primordial follicle recruitment and growth. This pathway also contributes to cell growth, survival and metabolism, and to the maintenance of genomic integrity. Accelerated primordial follicle activation through this pathway may result in a compromised DNA damage response (DDR). Additionally, the distinct DDR mechanisms in oocytes may become less efficient with ageing. This review considers DNA damage surveillance mechanisms and their links to the PTEN/PI3K/Akt signalling pathway, impacting on the DDR during growth activation of primordial follicles, and in ovarian ageing. Targeting DDR mechanisms within oocytes may be of value in developing techniques to protect ovaries against chemotherapy and in advancing clinical approaches to regulate primordial follicle activation.
机译:从原始卵泡停止的哺乳动物雌性种系中的基因组完整性对卵母细胞成熟的激活是基本的,以确保生殖成功。随着卵母细胞在出生前形成并且可能保持休眠多年,因此必须监测防御机制并保持良好的维护。染色体10(PTEN)/磷脂酰肌醇3-激酶(PI3K)/蛋白激酶B(PKB,AKT)的磷酸酶和抗素同源物是一种主要信号通路,用于控制原始卵泡募集和生长。该途径还有助于细胞生长,生存和代谢,并维持基因组完整性。通过该途径加速原始卵泡激活可能导致受损的DNA损伤响应(DDR)。另外,卵母细胞中的不同DDR机制可能与老化效率较低。该综述考虑DNA损伤监测机制及其与PTEN / PI3K / AKT信号通路的链接,影响DDR在原始卵泡生长激活过程中,卵巢老化。靶向卵母细胞中的DDR机制可能具有显影技术的价值,以保护卵巢免受化学疗法,以及推进调节原始卵泡激活的临床方法。

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