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在体外无法检测到绵羊促性腺激素释放激素受体基因对雌二醇和促性腺激素释放激素的反应性,但在转基因小鼠中可以显示出来。

Responsiveness of the ovine gonadotropin-releasing hormone receptor gene to estradiol and gonadotropin-releasing hormone is not detectable in vitro but is revealed in transgenic mice.

作者信息

Duval D L, Farris A R, Quirk C C, Nett T M, Hamernik D L, Clay C M

机构信息

Department of Physiology, Colorado State University, Fort Collins 80523, USA.

出版信息

Endocrinology. 2000 Mar;141(3):1001-10. doi: 10.1210/endo.141.3.7391.

Abstract

Although the ability of estradiol to enhance pituitary sensitivity to GnRH is established, the underlying mechanism(s) remain undefined. Herein, we find that approximately 9,100 bp of 5' flanking region from the ovine GnRH receptor (oGnRHR) gene is devoid of transcriptional activity in gonadotrope-derived cell lines and is not responsive to either estradiol or GnRH. In stark contrast, this same 9,100 bp promoter fragment directed tissue-specific expression of luciferase in multiple lines of transgenic mice. To test for hormonal regulation of the 9,100-bp promoter, ovariectomized transgenic females were treated with a GnRH antiserum alone or in combination with estradiol. Treatment with antiserum alone reduced pituitary expression of luciferase by 80%. Pituitary expression of luciferase in animals receiving both antiserum and estradiol was approximately 50-fold higher than animals receiving antiserum alone. The estradiol response of the -9,100-bp promoter was equally demonstrable in males. In addition, a GnRH analog (D-Ala-6-GnRH) that does not cross-react with the GnRH antiserum restored pituitary expression of luciferase in males passively immunized against GnRH to levels not different from castrate controls. Finally, treatment with both estradiol and D-Ala-6-GnRH increased pituitary expression of luciferase to a level greater than the sum of the individual treatments suggesting synergistic activation of the transgene by these two hormones. Thus, despite the complete absence of transcriptional activity and hormonal responsiveness in vitro, 9,100 bp of proximal promoter from the oGnRHR gene is capable of directing tissue-specific expression and is robustly responsive to both GnRH and estradiol in transgenic mice. To begin to refine the functional boundaries of the critical cis-acting elements, we next constructed transgenic mice harboring a transgene consisting of 2,700 bp of 5' flanking region from the oGnRHR gene fused to luciferase. As with the -9,100 bp promoter, expression of luciferase in the -2,700 lines was primarily confined to the pituitary gland, brain and testes. Furthermore, the passive immunization-hormonal replacement paradigms described above revealed both GnRH and estradiol responsiveness of the -2,700-bp promoter. Thus, 2,700 bp of proximal promoter from the oGnRHR gene is sufficient for tissue-specific expression as well as GnRH and estradiol responsiveness. Given the inability to recapitulate estradiol regulation of GnRHR gene expression in vitro, transgenic mice may represent one of the few viable avenues for ultimately defining the molecular mechanisms underlying estradiol regulation of GnRHR gene expression.

摘要

虽然雌二醇增强垂体对促性腺激素释放激素(GnRH)敏感性的能力已得到确认,但其潜在机制仍不明确。在此,我们发现绵羊GnRH受体(oGnRHR)基因5'侧翼区约9100 bp在促性腺激素细胞系中缺乏转录活性,且对雌二醇或GnRH均无反应。与之形成鲜明对比的是,相同的9100 bp启动子片段在多系转基因小鼠中指导荧光素酶的组织特异性表达。为检测9100 bp启动子的激素调节作用,对卵巢切除的转基因雌性小鼠单独或联合雌二醇给予GnRH抗血清处理。单独给予抗血清处理使垂体荧光素酶表达降低80%。同时接受抗血清和雌二醇的动物垂体荧光素酶表达比仅接受抗血清的动物高约50倍。-9100 bp启动子的雌二醇反应在雄性中同样明显。此外,一种与GnRH抗血清无交叉反应的GnRH类似物(D-Ala-6-GnRH)可使被动免疫GnRH的雄性小鼠垂体荧光素酶表达恢复至与去势对照组无差异的水平。最后,雌二醇和D-Ala-6-GnRH联合处理使垂体荧光素酶表达增加至高于单独处理之和的水平,表明这两种激素对转基因有协同激活作用。因此,尽管在体外完全缺乏转录活性和激素反应性,但oGnRHR基因9千1百bp的近端启动子能够指导组织特异性表达,且在转基因小鼠中对GnRH和雌二醇均有强烈反应。为开始细化关键顺式作用元件的功能边界,我们接下来构建了转基因小鼠,其携带由oGnRHR基因5'侧翼区2700 bp与荧光素酶融合组成的转基因。与-9100 bp启动子一样,-2700系中荧光素酶的表达主要局限于垂体、脑和睾丸。此外,上述被动免疫-激素替代模式揭示了-2700 bp启动子对GnRH和雌二醇均有反应。因此,oGnRHR基因2700 bp的近端启动子足以实现组织特异性表达以及对GnRH和雌二醇的反应。鉴于无法在体外重现雌二醇对GnRHR基因表达的调节,转基因小鼠可能是最终确定雌二醇调节GnRHR基因表达潜在分子机制的少数可行途径之一。

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