首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Rictor/mTORC2 Pathway in Oocytes Regulates Folliculogenesis and Its Inactivation Causes Premature Ovarian Failure
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Rictor/mTORC2 Pathway in Oocytes Regulates Folliculogenesis and Its Inactivation Causes Premature Ovarian Failure

机译:卵母细胞中的Rictor / mTORC2途径调节卵泡生成其失活导致卵巢早衰

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摘要

Molecular basis of ovarian folliculogenesis and etiopathogenesis of premature ovarian failure (POF), a common cause of infertility in women, are not fully understood. Mechanistic target of rapamycin complex 2 (mTORC2) is emerging as a central regulator of cell metabolism, proliferation, and survival. However, its role in folliculogenesis and POF has not been reported. Here, we showed that the signaling activity of mTORC2 is inhibited in a 4-vinylcyclohexene diepoxide (VCD)-induced POF mouse model. Notably, mice with oocyte-specific ablation of Rictor, a key component of mTORC2, demonstrated POF phenotypes, including massive follicular death, excessive loss of functional ovarian follicles, abnormal gonadal hormone secretion, and consequently, secondary subfertility in conditional knock-out (cKO) mice. Furthermore, reduced levels of Ser-473-phosphorylated Akt and Ser-253-phosphorylated Foxo3a and elevated pro-apoptotic proteins, Bad, Bax, and cleaved poly ADP-ribose polymerase (PARP), were observed in cKO mice, replicating the signaling alterations in 4-VCD-treated ovaries. These results indicate a critical role of the Rictor/mTORC2/Akt/Foxo3a pro-survival signaling axis in folliculogenesis. Interestingly, loss of maternal Rictor did not cause obvious developmental defects in embryos or placentas from cKO mice, suggesting that maternal Rictor is dispensable for preimplantation embryonic development. Our results collectively indicate key roles of Rictor/mTORC2 in folliculogenesis, follicle survival, and female fertility and support the utility of oocyte-specific Rictor knock-out mice as a novel model for POF.
机译:卵巢卵泡形成的分子基础和卵巢早衰(POF)(女性不孕的常见原因)的病因尚不完全清楚。雷帕霉素复合物2(mTORC2)的机械目标正在成为细胞代谢,增殖和存活的主要调节剂。然而,尚未报道其在卵泡形成和POF中的作用。在这里,我们显示了在4-乙烯基环己烯二环氧(VCD)诱导的POF小鼠模型中,mTORC2的信号传导活性受到抑制。值得注意的是,mTORC2的关键成分Rictor的卵母细胞特异性消融小鼠表现出POF表型,包括大量卵泡死亡,功能性卵泡过多丧失,性腺激素分泌异常,以及因此导致的条件性基因敲除(cKO)次生) 老鼠。此外,在cKO小鼠中观察到Ser-473磷酸化的Akt和Ser-253磷酸化的Foxo3a的水平降低,促凋亡蛋白Bad,Bax和裂解的聚ADP-核糖聚合酶(PARP)升高,复制了信号变化。在4VCD治疗的卵巢中。这些结果表明Rictor / mTORC2 / Akt / Foxo3a促存活信号轴在卵泡发生中的关键作用。有趣的是,失去母体的Rictor并不会引起来自cKO小鼠的胚胎或胎盘的明显发育缺陷,这表明母体的Rictor对于植入前的胚胎发育是必不可少的。我们的研究结果共同表明Rictor / mTORC2在卵泡形成,卵泡存活和女性受精中的关键作用,并支持卵母细胞特异性Rictor敲除小鼠作为POF的新型模型的实用性。

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