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Oocyte-specific deletion of Pten in mice reveals a stage-specific function of PTEN/PI3K signaling in oocytes in controlling follicular activation

机译:小鼠中Pten的卵母细胞特异性缺失揭示了卵母细胞中PTEN / PI3K信号传导在控制卵泡活化中的阶段特异性功能

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摘要

Immature ovarian primordial follicles are essential for maintenance of the reproductive lifespan of female mammals. Recently, it was found that overactivation of the phosphatidylinositol 3-kinase (PI3K) signaling in oocytes of primordial follicles by an oocyte-specific deletion of Pten (phosphatase and tensin homolog deleted on chromosome ten), the gene encoding PI3K negative regulator PTEN, results in premature activation of the entire pool of primordial follicles, indicating that activation of the PI3K pathway in oocytes is important for control of follicular activation. To investigate whether PI3K signaling in oocytes of primary and further developed follicles also plays a role at later stages in follicular development and ovulation, we conditionally deleted the Pten gene from oocytes of primary and further developed follicles by using transgenic mice expressing zona pellucida 3 (Zp3) promoter-mediated Cre recombinase. Our results show that Pten was efficiently deleted from oocytes of primary and further developed follicles, as indicated by the elevated phosphorylation of the major PI3K downstream component Akt. However, follicular development was not altered and oocyte maturation was also normal, which led to normal fertility with unaltered litter size in the mutant mice. Our data indicate that properly controlled PTEN/PI3K-Akt signaling in oocytes is essential for control of the development of primordial follicles whereas overactivation of PI3K signaling in oocytes does not appear to affect the development of growing follicles. This suggests that there is a stage-specific function of PTEN/PI3K signaling in mouse oocytes that controls follicular activation.
机译:不成熟的卵巢原始卵泡对于维持雌性哺乳动物的生殖寿命至关重要。最近,发现原始卵泡卵母细胞中的磷脂酰肌醇3-激酶(PI3K)信号转导过高是由于卵母细胞特异性Pten缺失(磷酸酶和张力蛋白同源物在第10号染色体上缺失),编码PI3K负调控因子PTEN的基因导致的。在原始卵泡整个池的过早活化中,表明卵母细胞中PI3K途径的活化对于控制卵泡活化是重要的。为了研究初级卵泡和进一步发育卵泡的卵母细胞中的PI3K信号转导在卵泡发育和排卵的后期是否也起作用,我们使用表达透明带3(Zp3)的转基因小鼠有条件地从初级卵泡和进一步发育卵泡的卵母细胞中删除了Pten基因。 )启动子介导的Cre重组酶。我们的结果表明,主要的PI3K下游组分Akt的磷酸化水平升高表明,Pten被有效地从初级卵泡和进一步发育的卵泡中删除。然而,卵泡发育没有改变,卵母细胞的成熟也很正常,这导致正常的繁殖力,突变小鼠的产仔数没有变化。我们的数据表明,卵母细胞中适当控制的PTEN / PI3K-Akt信号传导对于控制原始卵泡的发育至关重要,而卵母细胞中PI3K信号的过度激活似乎并不影响卵泡的生长。这表明在小鼠卵母细胞中PTEN / PI3K信号传导具有阶段特异性功能,可控制卵泡活化。

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