首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Oocyte stage-specific effects of MTOR determine granulosa cell fate and oocyte quality in mice
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PNAS Plus: Oocyte stage-specific effects of MTOR determine granulosa cell fate and oocyte quality in mice

机译:PNAS Plus:MTOR的卵母细胞阶段特异性效应决定了小鼠的颗粒细胞命运和卵母细胞质量

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摘要

MTOR (mechanistic target of rapamycin) is a widely recognized integrator of signals and pathways key for cellular metabolism, proliferation, and differentiation. Here we show that conditional knockout (cKO) of Mtor in either primordial or growing oocytes caused infertility but differentially affected oocyte quality, granulosa cell fate, and follicular development. cKO of Mtor in nongrowing primordial oocytes caused defective follicular development leading to progressive degeneration of oocytes and loss of granulosa cell identity coincident with the acquisition of immature Sertoli cell-like characteristics. Although Mtor was deleted at the primordial oocyte stage, DNA damage accumulated in oocytes during their later growth, and there was a marked alteration of the transcriptome in the few oocytes that achieved the fully grown stage. Although oocyte quality and fertility were also compromised when Mtor was deleted after oocytes had begun to grow, these occurred without overtly affecting folliculogenesis or the oocyte transcriptome. Nevertheless, there was a significant change in a cohort of proteins in mature oocytes. In particular, down-regulation of PRC1 (protein regulator of cytokinesis 1) impaired completion of the first meiotic division. Therefore, MTOR-dependent pathways in primordial or growing oocytes differentially affected downstream processes including follicular development, sex-specific identity of early granulosa cells, maintenance of oocyte genome integrity, oocyte gene expression, meiosis, and preimplantation developmental competence.
机译:MTOR(雷帕霉素的机械靶标)是细胞代谢,增殖和分化的关键信号和途径的整合者。在这里,我们显示原始或正在生长的卵母细胞中Mtor的条件性敲除(cKO)都会导致不育,但对卵母细胞质量,颗粒细胞命运和卵泡发育有不同的影响。 Mtor在未生长的原始卵母细胞中的cKO导致卵泡发育不良,从而导致卵母细胞进行性变性和颗粒细胞身份丧失,这与获得未成熟的Sertoli细胞样特征相吻合。尽管Mtor在原始卵母细胞阶段被删除,但DNA损伤在卵母细胞的后期生长过程中积累,并且在达到完全生长阶段的少数卵母细胞中,转录组发生了明显变化。尽管在卵母细胞开始生长后删除Mtor后,卵母细胞的质量和繁殖力也受到了损害,但这些现象并未明显影响卵泡生成或卵母细胞的转录组。然而,成熟卵母细胞中的一组蛋白质发生了显着变化。特别是,PRC1(胞质分裂1的蛋白调节剂)的下调会损害第一个减数分裂的完成。因此,原始或正在生长的卵母细胞中依赖MTOR的通路差异地影响下游过程,包括卵泡发育,早期颗粒细胞的性别特异性,卵母细胞基因组完整性的维持,卵母细胞基因表达,减数分裂和植入前发育能力。

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