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Estrogen receptors in granulosa cells govern meiotic resumption of pre-ovulatory oocytes in mammals

机译:颗粒细胞中的雌激素受体控制哺乳动物排卵前卵母细胞的减数分裂恢复

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摘要

In mammals, oocytes are arrested at the diplotene stage of meiosis I until the pre-ovulatory luteinizing hormone (LH) surge triggers meiotic resumption through the signals in follicular granulosa cells. In this study, we show that the estradiol (E2)-estrogen receptors (ERs) system in follicular granulosa cells has a dominant role in controlling oocyte meiotic resumption in mammals. We found that the expression of ERs was controlled by gonadotropins under physiological conditions. E2-ERs system was functional in maintaining oocyte meiotic arrest by regulating the expression of natriuretic peptide C and natriuretic peptide receptor 2 (NPPC/NPR2), which was achieved through binding to the promoter regions of Nppc and Npr2 genes directly. In ER knockout mice, meiotic arrest was not sustained by E2 in most cumulus–oocyte complexes in vitro and meiosis resumed precociously in pre-ovulatory follicles in vivo . In human granulosa cells, similar conclusions are reached that ER levels were controlled by gonadotropins and E2-ERs regulated the expression of NPPC/NPR2 levels. In addition, our results revealed that the different regulating patterns of follicle-stimulating hormone and LH on ER levels in vivo versus in vitro determined their distinct actions on oocyte maturation. Taken together, these findings suggest a critical role of E2-ERs system during oocyte meiotic progression and may propose a novel approach for oocyte in vitro maturation treatment in clinical practice.
机译:在哺乳动物中,卵母细胞停滞在减数分裂I的二倍体阶段,直到排卵前黄体生成激素(LH)激增通过卵泡颗粒细胞中的信号触发减数分裂恢复。在这项研究中,我们表明,卵泡颗粒细胞中的雌二醇(E2)-雌激素受体(ERs)系统在控制哺乳动物卵母细胞减数分裂的恢复中具有主导作用。我们发现在生理条件下,ERs的表达受促性腺激素控制。 E2-ERs系统可通过调节利钠肽C和利钠肽受体2(NPPC / NPR2)的表达来维持卵母细胞减数分裂阻滞,这是通过直接结合Nppc和Npr2基因的启动子区域来实现的。在ER敲除小鼠中,体外大多数卵丘-卵母细胞复合物中E2不能维持减数分裂阻滞,而体内排卵前卵泡的减数分裂早已恢复。在人类颗粒细胞中,得出类似的结论,即ER水平受促性腺激素控制,E2-ER调节NPPC / NPR2水平的表达。此外,我们的研究结果表明,体内和体外对卵泡刺激素和LH内质网水平的不同调节方式决定了它们对卵母细胞成熟的不同作用。综上所述,这些发现暗示了E2-ERs系统在卵母细胞减数分裂进程中的关键作用,并可能为临床实践中卵母细胞体外成熟治疗提出了一种新方法。

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