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Suppression of Notch Signaling Stimulates Progesterone Synthesis by Enhancing the Expression of NR5A2 and NR2F2 in Porcine Granulosa Cells

机译:Notch信号的抑制通过增强猪颗粒细胞中NR5A2和NR2F2的表达来刺激孕酮的合成。

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摘要

The conserved Notch pathway is reported to be involved in progesterone synthesis and secretion; however, the exact effects remain controversial. To determine the role and potential mechanisms of the Notch signaling pathway in progesterone biosynthesis in porcine granulosa cells (pGCs), we first used a pharmacological γ-secretase inhibitor, -( -(3,5-difluorophenacetyl- -alanyl))-S-phenylglycine t-butyl ester (DAPT), to block the Notch pathway in cultured pGCs and then evaluated the expression of genes in the progesterone biosynthesis pathway and key transcription factors (TFs) regulating steroidogenesis. We found that DAPT dose- and time-dependently increased progesterone secretion. The expression of steroidogenic proteins NPC1 and StAR and two TFs, NR5A2 and NR2F2, was significantly upregulated, while the expression of HSD3B was significantly downregulated. Furthermore, knockdown of both and with specific siRNAs blocked the upregulatory effects of DAPT on progesterone secretion and reversed the effects of DAPT on the expression of NPC1, StAR, and HSD3B. Moreover, knockdown of NR5A2 and NR2F2 stimulated the expression of Notch3. In conclusion, the inhibition of Notch signaling stimulated progesterone secretion by enhancing the expression of NPC1 and StAR, and the two TFs NR5A2 and NR2F2 acted as downstream TFs of Notch signaling in regulating progesterone synthesis.
机译:据报道,保守的Notch途径与孕酮的合成和分泌有关。但是,确切的效果仍存在争议。为了确定Notch信号通路在猪颗粒细胞(pGCs)孕酮生物合成中的作用和潜在机制,我们首先使用了药理学的γ-分泌酶抑制剂-(-(-(3,5-difluorophenacetyl--alanyl))-S-苯基甘氨酸叔丁酯(DAPT)阻断培养的pGC中的Notch途径,然后评估孕激素生物合成途径中的基因表达和调节类固醇生成的关键转录因子(TF)。我们发现DAPT剂量和时间依赖性增加了孕激素的分泌。类固醇生成蛋白NPC1和StAR以及两个TFs NR5A2和NR2F2的表达显着上调,而HSD3B的表达显着下调。此外,与特定siRNA的组合均可阻断DAPT对孕激素分泌的上调作用,并逆转DAPT对NPC1,StAR和HSD3B表达的作用。而且,敲低NR5A2和NR2F2刺激Notch3的表达。总之,Notch信号的抑制通过增强NPC1和StAR的表达来刺激孕激素的分泌,并且两个TFs NR5A2和NR2F2充当Notch信号的下游TFs调节孕激素的合成。

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