Halvorson L M, Ito M, Jameson J L, Chin W W
Division of Genetics, Department of Medicine, Brigham and Women's Hospital and Harvard Medical School, Boston, Massachusetts 02115, USA.
J Biol Chem. 1998 Jun 12;273(24):14712-20. doi: 10.1074/jbc.273.24.14712.
Recent in vivo and in vitro studies have implicated the orphan nuclear receptor, steroidogenic factor-1 (SF-1), and the early growth response protein 1 (Egr-1) in the transcriptional regulation of the luteinizing hormone beta-subunit (LHbeta) gene. We have previously demonstrated the ability of SF-1 to bind to and transactivate the rat LHbeta gene promoter acting at a consensus gonadotrope-specific element (GSE) located at position -127. We have now identified a second functional GSE site at position -59. In addition, based on electrophoretic mobility shift assay, in vitro translated Egr-1 is shown to bind to two putative Egr-1 binding sites (positions -112 and -50), which appear to be paired with the identified GSE sites. By transient transfection assay in pituitary-derived GH3 cells, it was seen that Egr-1 increases promoter activity of region -207/+5 of the rat LHbeta gene promoter through action at both Egr-1 sites. Furthermore, LHbeta gene promoter activity is markedly augmented in the presence of both factors together relative to activity in the presence of SF-1 or Egr-1 alone (150-fold versus 14-fold and 12-fold, respectively). These data define two composite SF-1-Egr-1 response-elements in the proximal LHbeta gene promoter and suggest that SF-1 and Egr-1 act synergistically to increase expression of the LHbeta gene in the gonadotrope.
近期的体内和体外研究表明,孤儿核受体类固醇生成因子-1(SF-1)和早期生长反应蛋白1(Egr-1)参与促黄体生成素β亚基(LHβ)基因的转录调控。我们之前已经证明,SF-1能够结合并反式激活大鼠LHβ基因启动子,作用于位于-127位的共有促性腺激素细胞特异性元件(GSE)。我们现在在-59位鉴定出了第二个功能性GSE位点。此外,基于电泳迁移率变动分析,体外翻译的Egr-1显示能结合两个假定的Egr-1结合位点(-112位和-50位),这两个位点似乎与已鉴定的GSE位点配对。通过在垂体来源的GH3细胞中进行瞬时转染分析,发现Egr-1通过作用于两个Egr-1位点增加大鼠LHβ基因启动子-207/+5区域的启动子活性。此外,与单独存在SF-1或Egr-1时的活性相比,两种因子共同存在时LHβ基因启动子活性显著增强(分别为150倍、14倍和12倍)。这些数据确定了LHβ基因近端启动子中的两个复合SF-1-Egr-1反应元件,并表明SF-1和Egr-1协同作用以增加促性腺激素细胞中LHβ基因的表达。