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Identification Of Igf2, Igfbp2 And Enpp2 As Estrogen-responsive Genes In Rat Hippocampus

机译:Igf2,Igfbp2和Enpp2作为大鼠海马中雌激素反应基因的鉴定

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Estrogen has an important effect on higher brain function such as memory, learning, and emotion in which the hippocampus plays a critical role. The hippocampus expresses estrogen receptors, ERα and ERβ, which are ligand-dependent transcription factors; however, the precise mechanism of estrogen action is not fully understood. We explored genes which are up-regulated by estrogen in the hippocampus using ovariectomized rat models. Microarray analysis revealed that mRNA levels of ectonucleotide pyrophosphatase/phosphodiesterase 2 (Enpp2), insulin like growth factor 2 (Igf2) and insulin-like growth factor binding protein 2 (Igfbp2) were increased by estrogen in the hippocampus. Quantitative-PCR analysis demonstrated that the levels of Enpp2, Igf2 and Igfbp2 mRNA were elevated by estrogen administration in the hippocampus but not in the hypothalamus. On the other hand, ERα, ERβ and progesterone receptor (PR) mRNA expression was up-regulated by estrogen only in the hypothalamus. We further analyzed the time-dependent regulation of these genes using rat pituitary adenoma, MtT/S and GH3 cells, which are known to express ERα. In both MtT/S and GH3 cells, Igfbp2 and Enpp2 mRNAs were up- and down-regulated by estrogen, respectively, whereas Igf2 mRNA was increased only in GH3 cells. These results demonstrate a brain region- and cell type-specific responses to estrogen in rat brain, suggesting that Igf signaling may mediate the estrogen function in the hippocampus.
机译:雌激素对大脑的高级功能(例如记忆,学习和情绪)具有重要作用,其中海马起着关键作用。海马表达雌激素受体ERα和ERβ,它们是配体依赖性转录因子。然而,雌激素作用的确切机制尚不完全清楚。我们使用去卵巢大鼠模型探索了海马中雌激素上调的基因。基因芯片分析显示,海马中的雌激素使外源核苷酸焦磷酸酶/磷酸二酯酶2(Enpp2),胰岛素样生长因子2(Igf2)和胰岛素样生长因子结合蛋白2(Igfbp2)的mRNA水平升高。定量PCR分析表明,通过雌激素给药,海马中的Enpp2,Igf2和Igfbp2 mRNA水平升高,而下丘脑中则没有。另一方面,雌激素仅在下丘脑中上调ERα,ERβ和孕激素受体(PR)的mRNA表达。我们进一步利用大鼠垂体腺瘤,MtT / S和GH3细胞(已知表达ERα)分析了这些基因的时间依赖性调节。在MtT / S和GH3细胞中,Igfbp2和Enpp2 mRNA分别被雌激素上调和下调,而Igf2 mRNA仅在GH3细胞中增加。这些结果表明大鼠脑中对雌激素的脑区域和细胞类型特异性反应,表明Igf信号传导可能介导海马体中的雌激素功能。

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