首页> 外文OA文献 >The orphan receptor hepatic nuclear factor 4 functions as a transcriptional activator for tissue-specific and hypoxia-specific erythropoietin gene expression and is antagonized by EAR3/COUP-TF1.
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The orphan receptor hepatic nuclear factor 4 functions as a transcriptional activator for tissue-specific and hypoxia-specific erythropoietin gene expression and is antagonized by EAR3/COUP-TF1.

机译:孤儿受体肝核因子4充当组织特异性和缺氧特异性促红细胞生成素基因表达的转录激活因子,并被EAR3 / COUP-TF1拮抗。

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摘要

The erythropoietin (Epo) gene is regulated by hypoxia-inducible cis-acting elements in the promoter and in a 3' enhancer, both of which contain consensus hexanucleotide hormone receptor response elements which are important for function. A group of 11 orphan nuclear receptors, transcribed and translated in vitro, were screened by the electrophoretic mobility shift assay. Of these, hepatic nuclear factor 4 (HNF-4), TR2-11, ROR alpha 1, and EAR3/COUP-TF1 bound specifically to the response elements in the Epo promoter and enhancer and, except for ROR alpha 1, formed DNA-protein complexes that had mobilities similar to those observed in nuclear extracts of the Epo-producing cell line Hep3B. Moreover, both anti-HNF-4 and anti-COUP antibodies were able to supershift complexes in Hep3B nuclear extracts. Like Epo, HNF-4 is expressed in kidney, liver, and Hep3B cells but not in HeLa cells. Transfection of a plasmid expressing HNF-4 into HeLa cells enabled an eightfold increase in the hypoxic induction of a luciferase reporter construct which contains the minimal Epo enhancer and Epo promoter, provided that the nuclear hormone receptor consensus DNA elements in both the promoter and the enhancer were intact. The augmentation by HNF-4 in HeLa cells could be abrogated by cotransfection with HNF-4 delta C, which retains the DNA binding domain of HNF-4 but lacks the C-terminal activation domain. Moreover, the hypoxia-induced expression of the endogenous Epo gene was significantly inhibited in Hep3B cells stably transfected with HNF-4 delta C. On the other hand, cotransfection of EAR3/COUP-TF1 and the Epo reporter either with HNF-4 into HeLa cells or alone into Hep3B cells suppressed the hypoxia induction of the Epo reporter. These electrophoretic mobility shift assay and functional experiments indicate that HNF-4 plays a critical positive role in the tissue-specific and hypoxia-inducible expression of the Epo gene, whereas the COUP family has a negative modulatory role.
机译:促红细胞生成素(Epo)基因受启动子和3'增强子中缺氧诱导的顺式作用元件的调节,这两个元件均含有对功能很重要的共有六核苷酸激素受体响应元件。通过电泳迁移率变动分析筛选了一组11种在体外转录和翻译的孤儿核受体。其中,肝核因子4(HNF-4),TR2-11,ROR alpha 1和EAR3 / COUP-TF1与Epo启动子和增强子中的应答元件特异性结合,除了ROR alpha 1以外,它们形成了DNA-蛋白复合物,其迁移率类似于在产生Epo的细胞系Hep3B的核提取物中观察到的迁移率。此外,抗HNF-4和抗COUP抗体都能够使Hep3B核提取物中的复合物超移。与Epo一样,HNF-4在肾脏,肝脏和Hep3B细胞中表达,但在HeLa细胞中不表达。将表达HNF-4的质粒转染到HeLa细胞中,可使含最小Epo增强子和Epo启动子的荧光素酶报告基因构建体的低氧诱导增加8倍,前提是启动子和增强子中的核激素受体共有DNA元素完好无损。通过与HNF-4 delta C共转染,可以消除HeLa细胞中HNF-4的扩增,HNF-4 delta C保留了HNF-4的DNA结合结构域,但缺乏C端激活结构域。此外,低氧诱导的内源性Epo基因的表达在稳定转染了HNF-4 delta C的Hep3B细胞中得到了显着抑制。另一方面,将EAR3 / COUP-TF1和Epo报告基因与HNF-4共转染HeLa细胞或单独进入Hep3B细胞可抑制Epo报告基因的低氧诱导。这些电泳迁移率变化分析和功能实验表明,HNF-4在Epo基因的组织特异性和低氧诱导表达中起着关键的积极作用,而COUP家族则具有负调节作用。

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