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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Androgens upregulate cyp19a1b (aromatase B) gene expression in the brain of zebrafish (Danio rerio) through estrogen receptors.
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Androgens upregulate cyp19a1b (aromatase B) gene expression in the brain of zebrafish (Danio rerio) through estrogen receptors.

机译:雄激素通过雌激素受体上调斑马鱼大脑中的cyp19a1b(芳香酶B)基因表达。

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摘要

The brain of teleosts is known for its strong aromatase expression, exhibiting unique features compared with other vertebrates. Among these features is the high sensitivity of aromatase B (the product of cyp19a1b) to estrogens. This effect involves the binding of estrogen receptors on an estrogen-responsive element (ERE) of the cyp19a1b promoter. Given the presence of potential androgen-responsive elements (AREs) on this promoter, in vivo and in vitro effects of androgens were studied. Using immunohistochemistry and quantitative PCR on zebrafish embryos, we found that cyp19a1b is upregulated by testosterone, an aromatizable androgen, and by 5alpha-dihydrotestosterone (DHT), a nonaromatizable androgen, suggesting a potential androgenic regulation of cyp19a1b through androgen receptors (ARs). To assess a putative direct regulation of the cyp19a1b gene by ARs, we transfected U251MG cells with zebrafish AR together with a luciferase reporter gene driven by 3000 bp of the proximal cyp19a1b promoter containing the ERE and potential AREs. Interestingly, although zebrafish AR activated luciferase reporter genes controlled by AREs, they failed to induce the cyp19a1b-luciferase construct. These data suggest that the androgenic regulation of cyp19a1b does not involve AR. We further showed that regulation of the cyp19a1b gene by testosterone is, in fact, due to aromatization, whereas the effect of DHT involves conversion into 5alpha-androstane-3beta,17beta-diol (betadiol), a metabolite of DHT with known estrogenic activity. The blockage of the androgen regulation of cyp19a1b expression using antiestrogens further confirmed the involvement of estrogen receptors in mediating these effects.
机译:硬骨鱼类的大脑以其强烈的芳香化酶表达而闻名,与其他脊椎动物相比具有独特的特征。这些特征之一是芳香酶B(cyp19a1b的产物)对雌激素的高度敏感性。此作用涉及cyp19a1b启动子的雌激素响应元件(ERE)上的雌激素受体结合。考虑到该启动子上存在潜在的雄激素响应元件(ARE),研究了雄激素的体内和体外作用。在斑马鱼胚胎上使用免疫组织化学和定量PCR,我们发现cyp19a1b被可芳香化的雄激素睾丸激素和不可芳香化的雄激素5α-二氢睾酮(DHT)上调,表明cyp19a1b通过雄激素受体(ARs)的潜在的雄激素调节作用。为了评估ARs对cyp19a1b基因的直接调控,我们用斑马鱼AR和荧光素酶报道基因转染了U251MG细胞,该荧光素酶报道基因由包含ERE和潜在ARE的近端cyp19a1b启动子的3000 bp驱动。有趣的是,尽管斑马鱼AR激活了由AREs控制的荧光素酶报告基因,但它们未能诱导cyp19a1b-荧光素酶构建体。这些数据表明cyp19a1b的雄激素调节不涉及AR。我们进一步表明,睾丸激素对cyp19a1b基因的调节实际上是由于芳香化作用,而DHT的作用涉及转化为5α-雄甾烷3β,17β-二醇(betadiol),这是具有已知雌激素活性的DHT代谢产物。使用抗雌激素对cyp19a1b表达的雄激素调节的阻断进一步证实了雌激素受体参与介导这些作用。

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