首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Regulation of the Hyaluronan Synthase 2 Gene by Convergence in Cyclic AMP Response Element-binding Protein and Retinoid Acid Receptor Signaling
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Regulation of the Hyaluronan Synthase 2 Gene by Convergence in Cyclic AMP Response Element-binding Protein and Retinoid Acid Receptor Signaling

机译:透明质酸合成酶2基因的调节通过在环AMP反应元件结合蛋白和类维生素A酸受体信号转导中的融合。

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摘要

The human hyaluronan synthase 2 (HAS2) gene encodes for an enzyme making hyaluronan, altered concentrations of which are associated with many pathological situations including wounding, several inflammatory conditions, and malignant tumors. In this study we showed that HAS2 is a primary target of the cAMP activator forskolin and the nuclear hormone all-trans-retinoic acid (RA). The first 2250 bp of the promoter contain three response elements (REs) for the transcription factor CREB1 as well as two REs for the nuclear receptor RAR. Chromatin immunoprecipitation and re-chromatin immunoprecipitation assays using selected fragments of the promoter containing the putative REs showed that forskolin and all-trans-RA modulate the formation of complexes between CREB1 and RAR with various co-regulators at the predicted sites. Interestingly, CREB1 complexes are regulated by all-trans-RA as are RAR complexes by forskolin. Reporter gene assays using nested promoter fragments supported these findings. Forskolin and all-trans-RA co-stimulation reduced the binding of CREB1, RAR, and the co-repressor nuclear receptor co-repressor 1 (NCoR1), but enhanced the association of co-activators MED1 and CREB-binding protein (CBP). RNA interference experiments suggested that MED1 and NCoR1 are central for the all-trans-RA induction of the HAS2 gene and CBP dominates its forskolin response. In general, our findings suggest a convergence of CREB1 and RAR signaling, and demonstrate the individual character of each RE in terms of co-regulator use.
机译:人透明质酸合酶2(HAS2)基因编码一种透明质酸酶,其浓度改变与多种病理情况有关,包括伤口,几种炎症性疾病和恶性肿瘤。在这项研究中,我们证明了HAS2是cAMP激活剂forskolin和核激素全反式维甲酸(RA)的主要靶标。启动子的前2250 bp包含三个转录因子CREB1的响应元件(RE),以及两个核受体RAR的RE。使用包含推定的RE的启动子的选定片段进行的染色质免疫沉淀和重染色质免疫沉淀测定表明,福斯高林和全反式RA通过预测位点的各种共调节剂调节CREB1和RAR之间的复合物形成。有趣的是,CREB1复合物受全反式RA的调控,而毛喉素受RAR复合物的调控。使用嵌套的启动子片段的记者基因测定支持了这些发现。 Forskolin和全反式RA共同刺激降低了CREB1,RAR和共阻遏物核受体共阻遏物1(NCoR1)的结合,但增强了共激活因子MED1和CREB结合蛋白(CBP)的结合。 RNA干扰实验表明MED1和NCoR1在HAS2基因的全反式RA诱导中起着中心作用,而CBP支配了它的毛喉素反应。通常,我们的发现表明CREB1和RAR信号的融合,并证明了每种RE在共调节剂使用方面的个性。

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