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KISS1 Suppresses Apoptosis and Stimulates the Synthesis of E2 in Porcine Ovarian Granulosa Cells

机译:KISS1抑制细胞凋亡并刺激猪卵巢颗粒细胞E2的合成。

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Previous studies have strongly recommended that KISS-1 metastasis suppressor ( KISS1 ) plays an essential gatekeeper of the initiation of reproductive maturation in mammals. However, KISS1 has been recently reported to highly express in ovarian granulosa cells (GCs). But the biological functionalities of KISS1 on cell apoptosis, cell cycle, and synthesis of estradiol-17β (E2) have not been explored in GCs. In this study, using porcine GCs as a cellular model, the overexpression plasmid of KISS1 was built to explore the biological effects of KISS1 on the PI3K signaling pathway, estrogen signaling pathway, cell apoptosis, cell cycle, and E2 secretion. We found that mRNA of KISS1 highly expressed in the ovary and significantly increased from immature to mature follicles in gilts. Overexpression of KISS1 could significantly increase the mRNA expression of PIK3CG, PIK3C1, and PDK1 , and significantly decreased the mRNA levels of FOXO3 , TSC2 , and BAD of PI3K signaling pathway. Furthermore, results of the flow cytometry showed that overexpression of KISS1 significantly inhibited the apoptosis of GCs and decreased the percentage of GCs at G0/G1 phase of the cell cycle. Additionally, overexpression of KISS1 could increase the mRNA levels of Star , CYP17 , 3B-HSD , 17B-HSD of estrogen synthesis signaling pathway, significantly increase the concentration of E2 in the supernatant of the cultured GCs, and up-regulate the mRNA expression levels of ESR1 and ESR2 . These results suggested that KISS1 might suppress cell apoptosis through activating the PI3K signaling pathway and stimulate synthesis of E2 via boosting the estrogen synthesis signaling pathway. This study would be of great interests for exploring the biological functionalities of KISS1 in the folliculogenesis and sex steroid production of the ovaries in mammals.
机译:先前的研究强烈建议KISS-1转移抑制因子(KISS1)在哺乳动物生殖成熟的启动中起着至关重要的作用。但是,最近有报道说KISS1在卵巢颗粒细胞(GCs)中高表达。但是,尚未在气相色谱中研究KISS1对细胞凋亡,细胞周期和雌二醇-17β(E2)合成的生物学功能。在这项研究中,以猪GC为细胞模型,构建了KISS1的过表达质粒,以探讨KISS1对PI3K信号通路,雌激素信号通路,细胞凋亡,细胞周期和E2分泌的生物学作用。我们发现,KISS1的mRNA在卵巢中高度表达,并从未成熟的小母猪到成熟的卵泡显着增加。 KISS1的过表达可以显着增加PIK3CG,PIK3C1和PDK1的mRNA表达,并显着降低PI3K信号通路的FOXO3,TSC2和BAD的mRNA水平。此外,流式细胞术的结果表明,KISS1的过表达显着抑制了GC的凋亡,并降低了细胞周期G0 / G1期的GC百分比。此外,KISS1的过表达可能增加雌激素合成信号通路的Star,CYP17、3B-HSD,17B-HSD的mRNA水平,显着增加培养的GC上清液中E2的浓度,并上调mRNA表达水平。 ESR1和ESR2的关系。这些结果表明,KISS1可能通过激活PI3K信号通路抑制细胞凋亡,并通过增强雌激素合成信号通路刺激E2的合成。这项研究对于探索KISS1在哺乳动物卵巢的卵泡生成和性类固醇生成中的生物学功能将具有极大的兴趣。

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