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Transcriptional control of the human glucocorticoid receptor: identification and analysis of alternative promoter regions

机译:人类糖皮质激素受体的转录控制:替代启动子区域的鉴定和分析。

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Glucocorticoid receptor levels are thought to be controlled by multiple alternative first exons. Seven of these exons are located in an upstream CpG island. In this study, we investigated the promoter activity of the intronic regions between these exons, and their susceptibility to CpG methylation and sequence variability. The seven promoters were cloned into luciferase reporter genes, and their activity measured in ten cell lines. CpG islands of 221 donors were genotyped and the effects of these SNPs were investigated in a reporter gene assay. We showed that each of the first exons was independently controlled by a unique promoter located directly upstream. Promoter activities were cell type-specific, and varied considerably between cell types. Irrespective of the cell type, in vitro methylation effectively silenced all reporter constructs. Eleven SNPs were observed within the CpG island of 221 donors, and a new promoter-specific haplotype was revealed. Four of the minor alleles reduced the reporter gene activity, with cell type specific effects. This complexity within the CpG island helps to explain the variable, tissue-specific transcriptional control of the GR, and provides insight into the mechanisms underlying tissue specific deregulation of GR levels.
机译:糖皮质激素受体水平被认为是由多个替代的第一外显子控制的。这些外显子中的七个位于上游CpG岛中。在这项研究中,我们调查了这些外显子之间内含子区域的启动子活性,以及​​它们对CpG甲基化和序列变异性的敏感性。将七个启动子克隆到荧光素酶报道基因中,并在十个细胞系中测量其活性。对221个供体的CpG岛进行了基因分型,并在报告基因测定中研究了这些SNP的作用。我们显示,每个第一个外显子均由直接位于上游的独特启动子独立控制。启动子活性是细胞类型特异性的,并且在细胞类型之间差异很大。无论细胞类型如何,体外甲基化都能有效沉默所有报告基因构建体。在221个供体的CpG岛中观察到11个SNP,并揭示了一种新的启动子特异性单倍型。四个次要等位基因降低了报告基因的活性,并具有细胞类型特异性作用。 CpG岛内的这种复杂性有助于解释GR的可变的,组织特异性的转录控制,并提供对GR水平的组织特异性去调控的潜在机制的了解。

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