大鼠β 1-肾上腺素能受体基因中糖皮质激素抑制结构域的鉴定。

Receptors & signal transduction Pub Date : 1996-01-01
S W Bahouth, E A Park, M Beauchamp, X Cui, C C Malbon
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引用次数: 0

摘要

编码大鼠β 1-肾上腺素能受体的基因表达受到糖皮质激素的抑制(Kiely et al., 1994)。在启动子的3.2 kb 5'侧区,鉴定了两个潜在的糖皮质激素反应元件(GREs),相对于翻译ATG位于-950和-2791。在大鼠C6胶质瘤细胞和人HepG2肝癌细胞中,利用β 1-肾上腺素能受体-荧光素酶融合基因的瞬时表达,探讨了β 1-肾上腺素能受体基因5'侧区糖皮质激素应答序列的特征。糖皮质激素抑制荧光素酶表达的能力在删除最5'定位的GRE后没有改变。相反,删除潜在的great -950,消除了糖皮质激素诱导的β 1-肾上腺素能受体-荧光素酶基因转录的抑制。含有-950和-926核苷酸之间的GRE序列的25bp元件赋予糖皮质激素依赖性转录抑制中性启动子。网状细胞裂解物中表达的人糖皮质激素受体(hGR α) α亚基的凝胶迁移转移试验表明,它与含有假定GRE的25bp序列具有特异性结合。我们报道了在大鼠、人类和小鼠基因中保守的大鼠β 1-肾上腺素能受体基因启动子中的抑制性GRE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of a glucocorticoid repressor domain in the rat beta 1-adrenergic receptor gene.

The expression of the gene encoding the rat beta 1-adrenergic receptor is suppressed by glucocorticoids (Kiely et al., 1994). Within the 3.2-kb 5'-flanking region of the promoter, two potential glucocorticoid response elements (GREs) at -950 and -2791 relative to the translational ATG were identified. Characterization of the glucocorticoid-responsive sequences in the 5'-flanking region of the beta 1-adrenergic receptor gene was explored in rat C6 glioma cells and human HepG2 hepatoma cells using transient expression of beta 1-adrenergic receptor-luciferase fusion genes. The ability of glucocorticoids to suppress luciferase expression was not altered when the most 5'-localized GRE was deleted. Deleting the potential GRE at -950, in contrast, abolished glucocorticoid-induced suppression of the beta 1-adrenergic receptor-luciferase gene transcription. A 25-bp element containing the GRE sequence between nucleotides -950 and -926 confers glucocorticoid-dependent inhibition of transcription to a neutral promoter. Gel mobility shift assays with the alpha-subunit of the human glucocorticoid receptor (hGR alpha) expressed in reticulocyte lysates demonstrated specific binding to the 25-bp sequence harboring the putative GRE. We report an inhibitory GRE in the promoter of the rat beta 1-adrenergic receptor gene that is conserved among the rat, human, and mouse genes.

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