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Divergent Regulation of ER and Kiss Genes by 17β-Estradiol in Hypothalamic ARC Versus AVPV Models

机译:下丘脑ARC与AVPV模型中17β-雌二醇对ER和Kiss基因的发散调节

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摘要

Kisspeptin (Kiss) and G-protein-coupled receptor (Gpr)54 have emerged as key regulators of reproduction. 17β-estradiol (E2)-mediated regulation of these neurons is nuclei specific, where anteroventral periventricular (AVPV) Kiss neurons are positively regulated by E2, whereas arcuate nucleus (ARC) neurons are inhibited. We have generated immortalized Kiss cell lines from male and female adult-derived murine hypothalamic primary culture, as well as cell lines from microdissected AVPV and ARC from female Kiss-green fluorescent protein (GFP) mice. All exhibit endogenous Kiss-1 expression, estrogen receptors (ER)s (ERα, ERβ, and Gpr30), as well as known markers of AVPV Kiss neurons in the mHypoA-50 and mHypoA-Kiss/GFP-4, vs markers of ARC Kiss neurons in the mHypoA-55 and the mHypoA-Kiss/GFP-3 lines. There was an increase in Kiss-1 mRNA expression at 24 hours in the AVPV lines and a repression of Kiss-1 mRNA at 4 hours in the ARC lines. An E2-mediated decrease in ERα mRNA expression at 24 hours in the AVPV cell lines was detected, and a significant decrease in Gpr30, ERα, and ERβ mRNA levels at 4 hours in the ARC cell lines was evident. ER agonists and antagonists determined the specific ERs responsible for mediating changes in gene expression. In the AVPV, ERα is required but not ERβ or GPR30, vs the ARC Kiss-expressing cell lines that require GPR30, and either ERα and/or ERβ. We determined cAMP response element-binding protein 1 was necessary for the down-regulation of Kiss-1 mRNA expression using small interfering RNA knockdown in the ARC cell model. These studies elucidate some of the molecular events involved in the differential E2-mediated regulation of unique and specific Kiss neuronal models.
机译:Kisspeptin(Kiss)和G蛋白偶联受体(Gpr)54已经成为繁殖的关键调节剂。这些神经元的17β-雌二醇(E2)介导的调节是核特异性的,其中前室室周围(AVPV)Kiss神经元受到E2的正调节,而弓形核(ARC)神经元受到抑制。我们已经从雄性和雌性成年鼠下丘脑原代培养物中产生了永生化的Kiss细胞系,并从雌性Kiss-green荧光蛋白(GFP)小鼠的显微解剖的AVPV和ARC中产生了细胞系。均显示内源性Kiss-1表达,雌激素受体(ER)(ERα,ERβ和Gpr30),以及mHypoA-50和mHypoA-Kiss / GFP-4中AVPV Kiss神经元的已知标记物,而ARC标记物亲吻mHypoA-55和mHypoA-Kiss / GFP-3细胞系中的神经元。在AVPV品系中,在24小时时Kiss-1 mRNA表达增加,在ARC品系中,在4小时时Kiss-1 mRNA表达下降。在AVPV细胞系中检测到E2介导的ERαmRNA表达在24小时减少,并且在ARC细胞系中在4 h时Gpr30,ERα和ERβmRNA水平显着下降。 ER激动剂和拮抗剂确定了负责介导基因表达变化的特定ER。在AVPV中,与需要GPR30以及ERα和/或ERβ的ARC Kiss表达细胞系相比,需要ERα而不是ERβ或GPR30。我们确定了cAMP反应元件结合蛋白1对于使用ARC细胞模型中的小分子干扰RNA抑制作用来下调Kiss-1 mRNA表达是必需的。这些研究阐明了一些独特的和特定的Kiss神经元模型在E2介导的差异调节中涉及的一些分子事件。

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