首页> 美国卫生研究院文献>Biochemical Journal >Differential modulation of transcriptional activity of oestrogen receptors by direct protein-protein interactions with retinoid receptors.
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Differential modulation of transcriptional activity of oestrogen receptors by direct protein-protein interactions with retinoid receptors.

机译:通过与类维生素A受体的直接蛋白质相互作用对雌激素受体的转录活性进行差异调节。

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摘要

Control of oestradiol-responsive gene regulation by oestrogen receptors (ERs) may involve complex cross-talk with retinoic acid receptors (RARs) and retinoid X receptors (RXRs). Recently, we have shown that ERalpha directly interacts with RARalpha and RXRalpha through their ligand binding domains (LBDs). In the present work, we extend these results by showing that ERbeta binds similarly to RARalpha and RXRalpha but not to the glucocorticoid receptor, as demonstrated by the yeast two-hybrid tests and glutathione S-transferase pull-down assays. These direct interactions were also demonstrated in gel-shift assays, in which the oestrogen response element (ERE) binding by ERalpha was enhanced by the RXRalpha LBD but was abolished by the RARalpha LBD. In addition, we showed that RARalpha and RXRalpha bound the ERE as efficiently as ERalpha, suggesting that competition for DNA binding may affect the transactivation function of the ER. In transient transfection experiments, co-expression of RARalpha or RXRalpha, along with ERalpha or ERbeta, revealed differential modulation of the ERE-dependent transactivation, which was distinct from the results when each receptor alone was co-transfected. Importantly, when the LBD of RARalpha was co-expressed with ERalpha, transactivation of ERalpha on the ERE was repressed as efficiently as when wild-type RARalpha was co-expressed. Furthermore, liganded RARalpha or unliganded RXRalpha enhanced the ERalpha transactivation, suggesting the formation of transcriptionally active heterodimer complexes between the ER and retinoid receptors. Taken together, these results suggest that direct protein-protein interactions may play major roles in the determination of the biological consequences of cross-talk between ERs and RARalpha or RXRalpha.
机译:雌激素受体(ER)对雌二醇反应性基因调控的控制可能涉及与视黄酸受体(RAR)和类维生素A X受体(RXR)的复杂串扰。最近,我们已经表明ERalpha通过其配体结合域(LBDs)与RARalpha和RXRalpha直接相互作用。在目前的工作中,我们通过显示ERbeta与RARalpha和RXRalpha类似地结合,但不与糖皮质激素受体结合,来扩展这些结果,如酵母双杂交试验和谷胱甘肽S-转移酶下拉试验所证实的。这些直接的相互作用也已在凝胶迁移分析中得到证实,其中RXRalpha LBD增强了由ERalpha结合的雌激素反应元件(ERE),但被RARalpha LBD消除了。此外,我们显示RARalpha和RXRalpha与ERalpha一样有效地结合ERE,这表明DNA结合的竞争可能会影响ER的反式激活功能。在瞬时转染实验中,RARalpha或RXRalpha以及ERalpha或ERbeta的共表达揭示了对ERE依赖性反式激活的差异调节,这与单独共转染每个受体的结果不同。重要的是,当RARalpha的LBD与ERalpha共表达时,ERα在ERE上的反式激活被抑制得与野生型RARalpha共表达时一样有效。此外,配体的RARalpha或未配体的RXRalpha增强了ERalpha的反式激活,表明ER和类维生素A受体之间形成了转录活性异二聚体复合物。综上所述,这些结果表明直接的蛋白质-蛋白质相互作用可能在确定ER与RARalpha或RXRalpha之间的串扰的生物学后果中起主要作用。

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