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The endothelial nitric oxide synthase/cyclic guanosine monophosphate/protein kinase G pathway activates primordial follicles

机译:内皮型氧化氮合酶/循环鸟苷一单磷酸/蛋白激酶G途径激活原始卵泡

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摘要

In mammals, the well-organized activation of quiescent primordial follicles is pivotal for female reproductive reserve. In the present study, we examined the mechanisms underlying primordial follicle activation in mice. We found that endothelial nitric oxide synthase (eNOS) and its downstream effectors, cyclic guanosine monophosphate (cGMP) and cGMP-dependent protein kinase G (PKG), were expressed in pre-granulosa cells and promoted primordial follicle activation, oocyte growth and granulosa cell proliferation in neonatal ovaries. Mammalian target of rapamycin (mTOR) colocalized with PKG in pre-granulosa cells and was essential for eNOS/cGMP/PKG pathway-induced primordial follicle activation. The eNOS/cGMP/PKG pathway was found to stabilize mTOR protein. The mRNA levels of F-box and WD repeat domain containing 7 (FBXW7), an E3 ubiquitin ligase, correlated negatively with mTOR protein levels in neonatal ovaries. FBXW7 bound to and destabilized mTOR protein in pre-granulosa cells in a ubiquitin/proteasome-dependent manner. However, agonists of the eNOS/cGMP/PKG pathway reduced FBXW7 mRNA levels. FBXW7 overexpression suppressed primordial follicle activation and prevented the eNOS/cGMP/PKG pathway from activating primordial follicles and stabilizing mTOR protein. These findings demonstrate that the eNOS/cGMP/PKG pathway activates primordial follicles by suppressing FBXW7-induced ubiquitination of mTOR in mice.
机译:在哺乳动物中,静止的静态原始卵泡激活是女性生殖储备的关键。在本研究中,我们检查了小鼠原始卵泡激活的机制。我们发现内皮内氧化物合酶(Enos)及其下游效应器,环状鸟嘌呤单磷酸盐(CGMP)和CGMP依赖性蛋白激酶G(PKG),在预颗粒细胞中表达,促进了原始卵泡活化,卵母细胞生长和颗粒细胞新生儿卵巢的增殖。哺乳动物雷帕霉素(mTOR)靶向PKG在颗粒前细胞中的催化,对ENOS / CGMP / PKG途径诱导的原始卵泡活化是必不可少的。发现eNOS / CGMP / PKG途径稳定MTOR蛋白。含有7(FBXW7),E3泛素连接酶的F箱和WD重复结构域的mRNA水平与新生卵巢中的MTOR蛋白水平负相关。 FBXW7以泛素/蛋白酶体依赖性方式在甘蓝粒细胞中结合和不稳定的MTOR蛋白。然而,ENOS / CGMP / PKG途径的激动剂减少了FBXW7 mRNA水平。 FBXW7过表达抑制原始卵泡激活,防止eNOS / CGMP / PKG途径激活原始卵泡和稳定MTOR蛋白。这些发现表明,eNOS / CGMP / PKG途径通过抑制小鼠中的MTOR诱导的MTOR诱导的MTOR来激活原始卵泡。

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