Freeman Alistair I, Munn Helen L, Lyons Val, Dammermann Alexander, Seckl Jonathan R, Chapman Karen E
Endocrine Unit, University of Edinburgh, Molecular Medicine Centre, Western General Hospital, Crewe Road, Edinburgh EH4 2XU, UK.
J Endocrinol. 2004 Nov;183(2):365-74. doi: 10.1677/joe.1.05773.
The level of expression of the glucocorticoid receptor (GR) is the principal determinant of glucocorticoid sensitivity in most cells. GR levels are permanently 'set' in a tissue-specific manner in response to the perinatal environment, an effect we have previously shown to relate to differential expression of tissue-enriched alternative promoters/exons 1 of the GR gene. In adult animals, GR levels are dynamically regulated around the 'set point' by glucocorticoids themselves, with glucocorticoids down-regulating GR mRNA in most cells and tissues. Here we have examined whether autoregulation of GR mRNA by glucocorticoids involves differential promoter regulation. We show that, in contrast to tissue-specific programming of GR mRNA levels, autoregulation of GR mRNA in vivo does not involve differential regulation of variant exon 1-containing GR mRNAs in that the major variants are down-regulated to a similar extent by glucocorticoid treatment. Consistent with this, transfections of reporter constructs showed that the majority of GR promoters, which are contained within a 4.4 kb region upstream of exon 2, are similarly regulated by glucocorticoids, with two regions of the promoter redundantly required for glucocorticoid regulation. Thus transcriptional autoregulation can occur in adult tissues around the set point established by promoter selection in early life.
糖皮质激素受体(GR)的表达水平是大多数细胞中糖皮质激素敏感性的主要决定因素。GR水平会根据围产期环境以组织特异性的方式被永久性地“设定”,我们之前已表明这种效应与GR基因中组织富集的替代启动子/外显子1的差异表达有关。在成年动物中,GR水平会由糖皮质激素自身围绕“设定点”进行动态调节,在大多数细胞和组织中,糖皮质激素会下调GR mRNA。在此,我们研究了糖皮质激素对GR mRNA的自调节是否涉及启动子的差异调节。我们发现,与GR mRNA水平的组织特异性编程不同,体内GR mRNA的自调节并不涉及含可变外显子1的GR mRNA的差异调节,因为主要变体在糖皮质激素处理下会以相似的程度被下调。与此一致的是,报告基因构建体的转染显示,位于外显子2上游4.4 kb区域内的大多数GR启动子受到糖皮质激素的类似调节,启动子的两个区域对于糖皮质激素调节是冗余必需的。因此,转录自调节可以在成年组织中围绕生命早期通过启动子选择建立的设定点发生。