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Mechanisms underlying the induction of the putative human tumor suppressor GPRC5A by retinoic acid.

机译:维甲酸诱导潜在的人类抑癌药GPRC5A的机制。

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Retinoic acid regulates the expression of genes involved in cell proliferation, differentiation and survival by direct control of gene transcription via activation of nuclear retinoid receptors bound to response elements in the promoters of target genes or by indirect mechanisms. Herein, we investigated the mechanism by which retinoic acid induces the expression of the human tumor suppressor GPRC5A. The proximal 5' upstream region of the GPRC5A gene was found to contain two potential RAR/RXR binding sites (RAREs) and one VDR/RXR binding site with direct repeat 5 (DR5) motifs designated DR5I (-489 to -473), DR5II (-136 to -120) and DR5III (-81 to -65). DR5II and DR5III but not DR5I were conserved among vertebrates. However, only DR5III (5'-TGT CCC TCT GCT CAC CC-3') was found to be the functional RARE for mediating induction of GPRC5A as indicated by electrophoretic mobility shift assay using wild type and mutated synthetic oligonucleotides representing different fragments of the promoter for competition with retinoic acid receptor beta RARE. Chromatin immunoprecipitation assay confirmed the binding of retinoic acid receptors alpha and gamma and retinoid X receptors alpha and beta to DR5III in intact cells. These results demonstrate the importance of functional analysis for validating the activity of predicted response elements.
机译:视黄酸通过激活与靶基因启动子中与反应元件结合的核维甲酸受体直接控制基因转录,或通过间接机制来调节与细胞增殖,分化和存活有关的基因表达。本文中,我们研究了视黄酸诱导人肿瘤抑制基因GPRC5A表达的机制。发现GPRC5A基因的近端5'上游区域包含两个潜在的RAR / RXR结合位点(RARE)和一个VDR / RXR结合位点,具有直接重复5(DR5)基元,称为DR5I(-489至-473),DR5II (-136至-120)和DR5III(-81至-65)。在脊椎动物中,DR5II和DR5III而不是DR5I是保守的。然而,仅DR5III(5'-TGT CCC TCT GCT CAC CC-3')被发现是介导GPRC5A诱导的功能性稀有蛋白,如使用野生型和代表启动子不同片段的突变合成寡核苷酸的电泳迁移率位移分析所表明的那样与视黄酸受体beta RARE竞争。染色质免疫沉淀测定证实了完整细胞中视黄酸受体α和γ以及类维生素X受体α和β与DR5III的结合。这些结果证明了功能分析对于验证预测响应元素活动的重要性。

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