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Tsc/mT0RC1 signaling in oocytes governs the quiescence and activation of primordial follicles

机译:卵母细胞中的Tsc / mT0RC1信号控制原始卵泡的静止和激活

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To maintain the female reproductive lifespan, the majority of ovarian primordial follicles are preserved in a quiescent state in order to provide ova for later reproductive life. However, the molecular mechanism that maintains the long quiescence of primordial follicles is poorly understood. Here we provide genetic evidence to show that the tumor suppressor tuberous sclerosis complex 1 (Tsc1), which negatively regulates mammalian target of rapamycin complex 1 (mTORCI), functions in oocytes to maintain the quiescence of primordial follicles. In mutant mice lacking the Tsc1 gene in oocytes, the entire pool of primordial follicles is activated prematurely due to elevated mTORCI activity in the oocyte, ending up with follicular depletion in early adulthood and causing premature ovarian failure (POF). We further show that maintenance of the quiescence of primordial follicles requires synergistic, collaborative functioning of both Tsc and PTEN (phosphatase and tensin homolog deleted on chromosome 10) and that these two molecules suppress follicular activation through distinct ways. Our results suggest that Tsc/mTORC1 signaling and PTEN/PI3K (phosphatidylinositol 3 kinase) signaling synergistically regulate the dormancy and activation of primordial follicles, and together ensure the proper length of female reproductive life. Deregulation of these signaling pathways in oocytes results in pathological conditions of the ovary, including POF and infertility.
机译:为了维持女性的生殖寿命,大多数卵巢原始卵泡处于静止状态,以便为以后的生殖生活提供卵子。但是,对维持原始卵泡长时间静止的分子机制了解甚少。在这里,我们提供了遗传证据,显示负抑制结节雷帕霉素复合物1(mTORCI)的哺乳动物靶标的抑癌性结节性硬化复合物1(Tsc1)在卵母细胞中发挥功能,以维持原始卵泡的静止。在卵母细胞中缺乏Tsc1基因的突变小鼠中,由于卵母细胞中mTORCI活性的提高,原始卵泡的整个池被过早激活,最终在成年早期被滤泡耗尽,并导致卵巢早衰(POF)。我们进一步表明,维持原始卵泡的静止需要Tsc和PTEN(在10号染色体上缺失的磷酸酶和肌腱同源物)的协同,协同功能,并且这两个分子通过不同的方式抑制卵泡的活化。我们的结果表明,Tsc / mTORC1信号传导和PTEN / PI3K(磷脂酰肌醇3激酶)信号传导协同调节休眠和原始卵泡的激活,并共同确保女性生殖寿命的适当延长。卵母细胞中这些信号通路的失调导致卵巢的病理状况,包括POF和不育。

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