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Notch Signaling Regulates Differentiation and Steroidogenesis in Female Mouse Ovarian Granulosa Cells

机译:Notch Signaling调节雌性小鼠卵巢颗粒细胞中的分化和甾体系

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摘要

The Notch pathway is a highly conserved juxtacrine signaling mechanism that is important for many cellular processes during development, including differentiation and proliferation. Although Notch is important during ovarian follicle formation and early development, its functions during the gonadotropin-dependent stages of follicle development are largely unexplored. We observed positive regulation of Notch activity and expression of Notch ligands and receptors following activation of the luteinizing hormone-receptor in prepubertal mouse ovary. JAG1, the most abundantly expressed Notch ligand in mouse ovary, revealed a striking shift in localization from oocytes to somatic cells following hormone stimulation. Using primary cultures of granulosa cells, we investigated the functions of Jag1 using small interfering RNA knockdown. The loss of JAG1 led to suppression of granulosa cell differentiation as marked by reduced expression of enzymes and factors involved in steroid biosynthesis, and in steroid secretion. Jag1 knockdown also resulted in enhanced cell proliferation. These phenotypes were replicated, although less robustly, following knockdown of the obligate canonical Notch transcription factor RBPJ. Intracellular signaling analysis revealed increased activation of the mitogenic phosphatidylinositol 3-kinase/protein kinase B and mitogen-activated protein kinase/extracellular signal-regulated kinase pathways following Notch knockdown, with a mitogen-activated protein kinase kinase inhibitor blocking the enhanced proliferation observed in Jag1 knockdown granulosa cells. Activation of YB-1, a known regulator of granulosa cell differentiation genes, was suppressed by Jag1 knockdown. Overall, this study reveals a role of Notch signaling in promoting the differentiation of preovulatory granulosa cells, adding to the diverse functions of Notch in the mammalian ovary.
机译:缺口途径是一种高度保守的Juxtacrine信号传导机制,对于在发育过程中许多细胞过程非常重要,包括分化和增殖。虽然在卵巢卵泡形成和早期发展期间,缺口是重要的,但其在卵泡发育的促性腺激素依赖阶段的功能主要是未开发的。我们观察到在预染生小鼠卵巢中叶氏素激素受体激活后,观察到缺口活性和凹口配体和受体的表达。 JAG1,最丰富的小鼠卵巢中的Notch配体,揭示了激素刺激后卵母细胞到体细胞的定位突出的转变。使用颗粒细胞的主要培养,我们使用小干扰RNA敲低来研究JAG1的功能。 JAG1的损失导致抑制颗粒细胞分化,其显着通过减少酶和类固醇生物合成的因素,以及类固醇分泌。 JAG1敲低也导致细胞增殖增强。在敲低的典型缺口转录因子RBPJ之后,这些表型被复制。细胞内信号传导分析显示在Notch敲低后促使乳腺素磷脂酰肌醇3-激酶/蛋白激酶B和丝裂激活蛋白激酶/细胞外信号调节激酶途径的增加,含有丝分裂剂活化的蛋白激酶激酶抑制剂阻断JAG1中观察到的增强增殖敲低颗粒细胞。通过JAG1敲低抑制了Yb-1,一种已知的颗粒细胞分化基因的调节剂。总体而言,该研究揭示了Notch信号传导在促进预保化颗粒细胞的分化中的作用,添加到哺乳动物卵巢中缺口的不同功能。

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  • 来源
    《Endocrinology》 |2018年第1期|共15页
  • 作者单位

    Northwestern Univ Dept Mol Biosci 2200 Campus Dr Pancoe Pavil Room 1115 Evanston IL 60208 USA;

    Northwestern Univ Dept Mol Biosci 2200 Campus Dr Pancoe Pavil Room 1115 Evanston IL 60208 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 内分泌腺疾病及代谢病;
  • 关键词

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