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首页> 外文期刊>Endocrinology >The Arcuate Estrogen-Regulated Transcriptome: Estrogen Response Element-Dependent and -Independent Signaling of ER alpha in Female Mice
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The Arcuate Estrogen-Regulated Transcriptome: Estrogen Response Element-Dependent and -Independent Signaling of ER alpha in Female Mice

机译:弧形雌激素调节的转录组:雌激素响应元素依赖性和依赖于雌性小鼠中ERα的信号传导

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摘要

To influence energy homeostasis and reproduction, 17 beta-estradiol (E2) controls the arcuate nucleus (ARC) through multiple receptor-mediated mechanisms, but primarily via estrogen receptor (ER) a, which signals through both estrogen response element (ERE)-dependent and -independent mechanisms. To determine ER alpha-mediated, ERE-dependent, and ERE-independent E2 signaling in the ARC, we examined the differential regulation of the mouse arcuate transcriptome by E2 using three mice genotypes: (1) wild-type, (2) ER alpha knock-in/knockout (ERE-independent mechanisms), and (3) total ERa knockout (ERa-independent mechanisms). Females were ovariectomized and injected with oil or E2, and RNA sequencing on the ARC was used to identify E2-regulated genes in each genotype. Our results show that E2 regulates numerous genes involved in cell signaling, cytoskeleton structure, inflammation, neurotransmission, neuropeptide production, and transcription. Furthermore, ERE-independent signaling regulates ARC genes expressed in kisspeptin neurons and transcription factors that control the hypothalamic/pituitary/gonadal axis. Interestingly, a few genes involved in mitochondrial oxidative respiration were regulated by E2 through ER alpha-independent signaling. A comparison within oil- and E2-treated females across the three genotypes suggests that genes involved in cell growth and proliferation, extracellular matrices, neuropeptides, receptors, and transcription are differentially expressed across the genotypes. Comparing with previously published chromatin immunoprecipitation sequencing analysis, we found that ERE-independent regulation in the ARC is mainly mediated by tethering of ERa, which is consistent with previous findings. We conclude that the mouse arcuate estrogen-regulated transcriptome is regulated by multiple receptor-mediated mechanisms to modulate the central control of energy homeostasis and reproduction, including novel E2-responsive pathways.
机译:为了影响能量稳态和繁殖,17β-雌二醇(E2)通过多种受体介导的机制对弓形核(ARC)控制,但主要通过雌激素受体(ER)A,其通过雌激素反应元件(ERE) - 依赖性和依赖机制。为了确定ER alpha介导的,依赖于弧形和eRE独立的E2信号传导,我们使用三只小鼠基因型检查了e2的小鼠弓形转录组的差异调节:(1)野生型,(2)ERα敲门/敲门声(ERE独立机制),和(3)总时代淘汰赛(以时代无关的机制)。雌性卵巢切除并注射油或E2,并且电弧上的RNA测序用于鉴定每个基因型中的E2调节基因。我们的研究结果表明,E2调节众多基因涉及细胞信号,细胞骨架结构,炎症,神经递血,神经疏肽产生和转录。此外,ERE无关的信号传导调节基肽神经元和转录因子中表达的ARC基因,可控制下丘脑/垂体/性腺轴线。有趣的是,少数参与线粒体氧化呼吸的少数基因由E2通过ERα-无关的信号传导调节。在三种基因型中的油和E2治疗的女性中的比较表明,参与细胞生长和增殖,细胞外基质,神经肽,受体和转录的基因在差异中表达了基因型。与先前公布的染色质免疫沉淀序列测序分析相比,我们发现弧中的异常调节主要由时代的束缚介导,这与先前的发现一致。我们得出结论,小鼠弧形雌激素调节的转录组由多种受体介导机制调节,以调节能量稳态和繁殖的中央控制,包括新型E2响应途径。

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