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首页> 外文期刊>Endocrine. >Effects of estrogen receptor alpha and beta gene deletion on estrogenic induction of progesterone receptors in the locus coeruleus in female mice.
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Effects of estrogen receptor alpha and beta gene deletion on estrogenic induction of progesterone receptors in the locus coeruleus in female mice.

机译:雌激素受体α和β基因缺失对雌性小鼠蓝斑中孕激素受体雌激素诱导的影响。

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摘要

Locus coeruleus (LC) is involved in the LHRH regulation by gonadal steroids. We investigated the expression of progesterone and estrogen receptors (PR; ER) in LC neurons of ERalpha (alphaERKO) or ERbeta (betaERKO) knockout mice, and their wild-type (alphaWT and betaWT). Immunocytochemical studies showed that LC expresses PR and both ERs, although ERbeta was more abundant. Estradiol benzoate (EB) decreased ERalpha-positive cells in WT and betaERKO mice, and progesterone caused a further reduction, whereas none of the steroids influenced ERbeta expression. ERbeta deletion increased ERalpha while ERalpha deletion did not alter ERbeta expression. In both WT mice, EB increased PR expression, which was diminished by progesterone. These steroid effects were also observed in alphaERKO animals but to a lesser extent, suggesting that ERalpha is partially responsible for the estrogenic induction of PR in LC. Steroid effects on PR in betaERKO mice were similar to those in the alphaERKO but to a lesser extent, probably because PR expression was already high in the oil-treated group. This expression seems to be specific of LC neurons, since it was not observed in other areas studied, the preoptic area and ventromedial nucleus of hypothalamus. These findings show that LC in mice expresses alphaER, betaER, and PR, and that a balance between them may be critical for the physiological control of reproductive function.
机译:蓝藻(LC)参与性腺类固醇的LHRH调节。我们调查了孕酮和雌激素受体(PR; ER)在ERalpha(alphaERKO)或ERbeta(betaERKO)敲除小鼠的LC神经元及其野生型(alphaWT和betaWT)中的表达。免疫细胞化学研究显示,尽管ERbeta更丰富,但LC既表达PR又表达两个ER。雌二醇苯甲酸酯(EB)减少了WT和betaERKO小鼠的ERalpha阳性细胞,而孕酮引起了进一步的减少,而没有任何类固醇影响ERbeta的表达。 ERbeta删除增加ERalpha,而ERalpha删除不改变ERbeta表达。在两只野生型小鼠中,EB都增加了PR表达,黄体酮降低了PR表达。在alphaERKO动物中也观察到了这些类固醇的作用,但程度较轻,表明ERalpha部分负责LC中PR的雌激素诱导。 betaERKO小鼠中类固醇对PR的类固醇作用与alphaERKO相似,但程度较小,这可能是因为在油处理组中PR表达已经很高。该表达似乎是LC神经元的特异表达,因为在其他研究区域,下丘脑的视前区和腹膜内侧核中均未观察到该表达。这些发现表明,小鼠中的LC表达alphaER,betaER和PR,并且它们之间的平衡对于生殖功能的生理控制可能至关重要。

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