Barger P M, Kelly D P
Department of Medicine, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Biol Chem. 1997 Jan 31;272(5):2722-8. doi: 10.1074/jbc.272.5.2722.
To investigate the mechanisms involved in the transcriptional control of retinoid X receptor (RXR) gene expression, the 5'-flanking region of the human RXRgamma2 isoform was characterized. An imperfect hexamer repeat (gamma retinoid X response element; gammaRXRE) with a single nucleotide spacer (GGTTGAaAGGTCA) was identified immediately upstream of the RXRgamma2 gene transcription start site. Cotransfection studies in CV-1 cells with expression vectors for the retinoid receptors RXRalpha and retinoic acid receptor beta (RARbeta) demonstrated that the gammaRXRE confers retinoid-mediated transcriptional activation with preferential activation by RXR in the presence of its cognate ligand, 9-cis-retinoic acid (RA). Electrophoretic mobility shift assays demonstrated that RXR homodimer binding to gammaRXRE is markedly enhanced by 9-cis-RA, whereas RAR.RXR heterodimer binding is ligand-independent. DNA binding studies and cell cotransfection experiments also demonstrated that the nuclear receptor, chicken ovalbumin upstream promoter transcription factor (COUP-TF), repressed transcription via the gammaRXRE. Cotransfection experiments revealed that COUP-TF and RXRalpha compete at the gammaRXRE to modulate transcription bidirectionally over a wide range. These results demonstrate that the human RXRgamma2 gene promoter contains a novel imperfect repeat element capable of mediating RXR-dependent transcriptional autoactivation and COUP-TF-dependent repression.
为了研究参与视黄酸X受体(RXR)基因表达转录调控的机制,对人RXRγ2亚型的5'-侧翼区域进行了特征分析。在RXRγ2基因转录起始位点上游紧邻处鉴定出一个带有单个核苷酸间隔(GGTTGAaAGGTCA)的不完美六聚体重复序列(γ视黄酸X反应元件;γRXRE)。在CV-1细胞中用视黄酸受体RXRα和维甲酸受体β(RARβ)的表达载体进行共转染研究表明,γRXRE赋予视黄酸介导的转录激活,在其同源配体9-顺式维甲酸(RA)存在的情况下,RXR具有优先激活作用。电泳迁移率变动分析表明,9-顺式RA可显著增强RXR同二聚体与γRXRE的结合,而RAR·RXR异二聚体的结合则不依赖配体。DNA结合研究和细胞共转染实验还表明,核受体鸡卵清蛋白上游启动子转录因子(COUP-TF)通过γRXRE抑制转录。共转染实验表明,COUP-TF和RXRα在γRXRE处竞争,在很宽的范围内双向调节转录。这些结果表明,人RXRγ2基因启动子包含一个新型的不完美重复元件,能够介导RXR依赖性转录自激活和COUP-TF依赖性抑制。