Department of Medicine, University of Florida, Gainesville, FL 32610, United States.
Steroids. 2012 Apr;77(5):360-6. doi: 10.1016/j.steroids.2011.12.011. Epub 2011 Dec 19.
Aldosterone stimulates the endothelin-1 gene (Edn1) in renal collecting duct (CD) cells by a mechanism involving the mineralocorticoid receptor (MR) and the glucocorticoid receptor (GR). The goal of the present study was to determine if the synthetic glucocorticoid dexamethasone affected Edn1 gene expression and to characterize GR binding patterns to an element in the Edn1 promoter. Dexamethasone (1μM) induced a 4-fold increase in Edn1 mRNA in mIMCD-3 inner medullary CD cells. Similar results were obtained from cortical collecting duct-derived mpkCCD(c14) cells. RU486 inhibition of GR completely blocked dexamethasone action on Edn1. Similarly, 24h transfection of siRNA against GR reduced Edn1 expression by approximately 50%. However, blockade of MR with either spironolactone or siRNA had little effect on dexamethasone induction of Edn1. Cotransfection of MR and GR siRNAs together had no additive effect compared to GR-siRNA alone. The results indicate that dexamethasone acts on Edn1 exclusively through GR and not MR. DNA affinity purification studies revealed that either dexamethasone or aldosterone resulted in GR binding to the same hormone response element in the Edn1Edn1 promoter. The Edn1 hormone response element contains three important sequence segments. Mutational analysis revealed that one of these segments is particularly important for modulating MR and GR binding to the Edn1 hormone response element.
醛固酮通过一种涉及盐皮质激素受体(MR)和糖皮质激素受体(GR)的机制刺激肾集合管(CD)细胞中的内皮素-1 基因(Edn1)。本研究的目的是确定合成糖皮质激素地塞米松是否会影响 Edn1 基因表达,并对 Edn1 启动子中一个元件的 GR 结合模式进行特征描述。地塞米松(1μM)诱导 mIMCD-3 内髓质 CD 细胞中 Edn1 mRNA 增加 4 倍。皮质集合管衍生的 mpkCCD(c14)细胞也得到了类似的结果。GR 的 RU486 抑制完全阻断了地塞米松对 Edn1 的作用。同样,24 小时转染针对 GR 的 siRNA 可使 Edn1 表达减少约 50%。然而,用螺内酯或 siRNA 阻断 MR 对地塞米松诱导 Edn1 的作用影响很小。MR 和 GR siRNA 的共转染与单独使用 GR-siRNA 相比没有相加作用。结果表明,地塞米松仅通过 GR 而不是 MR 作用于 Edn1。DNA 亲和纯化研究表明,地塞米松或醛固酮均可导致 GR 结合到 Edn1 启动子中的相同激素反应元件上。Edn1 激素反应元件包含三个重要的序列片段。突变分析表明,这些片段之一对于调节 MR 和 GR 与 Edn1 激素反应元件的结合特别重要。