首页> 外文OA文献 >Synergistic activation of retinoic acid (RA)-responsive genes and induction of embryonal carcinoma cell differentiation by an RA receptor alpha (RAR alpha)-, RAR beta-, or RAR gamma-selective ligand in combination with a retinoid X receptor-specific ligand.
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Synergistic activation of retinoic acid (RA)-responsive genes and induction of embryonal carcinoma cell differentiation by an RA receptor alpha (RAR alpha)-, RAR beta-, or RAR gamma-selective ligand in combination with a retinoid X receptor-specific ligand.

机译:视黄酸(RA)响应基因的协同激活和RA受体α(RAR alpha)-,RARβ-或RARγ-选择性配体与类视黄醇X受体特异性配体的组合诱导胚胎癌细胞分化。

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摘要

Retinoic acid receptor (RAR)-retinoid X receptor (RXR) heterodimers bind to cognate response elements in vitro more efficiently than do RAR or RXR homodimers, and both RAR and RXR partners have been shown to activate various promoters in transiently transfected cells. We have now investigated whether ligand-dependent activation of both heterodimeric partners is involved in induced expression of endogenous RA-responsive genes and in P19 and F9 cell differentiation. On their own, low concentrations of retinoids selective for either RAR alpha, RAR beta, or RAR gamma did not induce or very inefficiently induced the expression of several RA target genes or triggered differentiation. An RXR-specific synthetic retinoid was similarly inefficient at any concentration. In contrast, at the same concentrations, various combinations of RAR (RAR alpha, RAR beta, or RAR gamma) and RXR selective retinoids resulted in synergistic induction of all retinoic acid (RA) target genes examined, as well as in cell differentiation. However, the magnitude of this synergistic activation varied depending on both the RAR-RXR combination and the promoter context of the responsive genes. Promiscuous activation of the three RARs, or concomitant activation of RAR alpha and RAR gamma, at selective retinoid concentrations also resulted in induction of gene expression and cell differentiation. Taken together, our results are consistent with the conclusion that the RAR and RXR partners of RAR-RXR heterodimers can synergistically activate transcription of RA-responsive genes and can induce differentiation of P19 and F9 cells. Our results also indicate that there is a significant degree of functional redundancy between the three RAR types which, however, varies with the nature of the RA target genes.
机译:维甲酸受体(RAR)-类维生素X受体(RXR)异二聚体比RAR或RXR同二聚体在体外更有效地与同源反应元件结合,并且RAR和RXR伴侣均已证明可激活瞬时转染细胞中的各种启动子。现在我们已经研究了两个异二聚体伴侣的配体依赖性活化是否参与了内源性RA反应基因的诱导表达以及P19和F9细胞的分化。就其自身而言,对RAR alpha,RAR beta或RAR gamma选择性低浓度的类维生素A不会诱导或非常低效地诱导了几种RA靶基因的表达或引发了分化。 RXR特异性合成类维生素A在任何浓度下的效率均相似。相反,在相同浓度下,RAR(RARα,RARβ或RARγ)和RXR选择性类维生素A的各种组合可协同诱导所有所检测的视黄酸(RA)靶基因,并促进细胞分化。但是,这种协同激活的程度取决于RAR-RXR组合和响应基因的启动子环境。在选择性类视色素浓度下,三个RAR的混杂激活或RARα和RARγ的伴随激活也导致基因表达和细胞分化。两者合计,我们的结果与以下结论一致,即RAR-RXR异二聚体的RAR和RXR伙伴可以协同激活RA反应基因的转录,并可以诱导P19和F9细胞分化。我们的结果还表明,三种RAR类型之间存在很大程度的功能冗余,但是,这些冗余因RA目标基因的性质而异。

著录项

  • 作者

    Roy, B; Taneja, R; Chambon, P;

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  • 年度 1995
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  • 正文语种 en
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