Butler A J, Parker M G
Laboratory of Molecular Endocrinology, Imperial Cancer Research Fund, London, UK.
Nucleic Acids Res. 1995 Oct 25;23(20):4143-50. doi: 10.1093/nar/23.20.4143.
Chicken ovalbumin upstream promoter-transcription factor (COUP-TF) represses the transcriptional activity of a number of nuclear receptors, including that of retinoid receptors (RAR and RXR) and thyroid hormone receptors (TR). Since COUP-TF is capable of binding to DNA in vitro either as a homodimer or as a heterodimer with RXR or TR, it has not been possible to distinguish between competitive DNA binding and heterodimer formation as a mechanism to account for the repression. Using a two-hybrid system we have investigated the dimerisation properties of COUP-TF II in intact cells. In conditions where COUP-TF II homodimers and RXR alpha-RAR alpha heterodimers were formed we were unable to detect the formation of heterodimers between COUP-TF II and RXR alpha. Moreover, we were unable to detect an interaction between COUP-TF II and RXR alpha on DNA. Similarly COUP-TF II homodimers and RXR alpha-TR beta heterodimers are favoured over COUP-TF II-TR beta heterodimers. We conclude that the formation of functionally inactive heterodimers is unlikely to represent a general mechanism by which COUP-TF represses the transcriptional activity of nuclear receptors and favour a model in which repression is mediated by COUP-TF homodimers competing for binding to DNA.
鸡卵清蛋白上游启动子转录因子(COUP-TF)可抑制多种核受体的转录活性,包括类视黄醇受体(RAR和RXR)以及甲状腺激素受体(TR)。由于COUP-TF在体外能够以同二聚体形式,或与RXR或TR形成异二聚体的形式与DNA结合,因此无法区分竞争性DNA结合和异二聚体形成作为一种抑制机制。我们使用双杂交系统研究了完整细胞中COUP-TF II的二聚化特性。在形成COUP-TF II同二聚体和RXRα-RARα异二聚体的条件下,我们无法检测到COUP-TF II与RXRα之间异二聚体的形成。此外,我们无法检测到COUP-TF II与RXRα在DNA上的相互作用。同样,与COUP-TF II-TRβ异二聚体相比,COUP-TF II同二聚体和RXRα-TRβ异二聚体更易形成。我们得出结论,功能失活的异二聚体的形成不太可能是COUP-TF抑制核受体转录活性的普遍机制,我们支持这样一种模型,即抑制是由COUP-TF同二聚体竞争结合DNA介导的。