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首页> 外文期刊>American Journal of Physiology >Transcriptional regulation of urate transportosome member SLC2A9 by nuclear receptor HNF4alpha
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Transcriptional regulation of urate transportosome member SLC2A9 by nuclear receptor HNF4alpha

机译:核受体HNF4α的尿剂转运成员SLC2A9的转录调节

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Renal tubular handling of urate is realized by a network of uptake and efflux transporters, including members of drug transporter families such as solute carrier proteins and ATP-binding cassette transporters. Solute carrier family 2, member 9 (SLC2A9), is one key factor of this so called "urate transportosome." The aim of the present study was to understand the transcriptional regulation of SLC2A9 and to test whether identified factors might contribute to a coordinated transcriptional regulation of the transporters involved in urate handling. In silico analysis and cell-based reporter gene assays identified a hepatocyte nuclear factor (HNF)4alpha-binding site in the promoter of SLC2A9 isoform 1, whose activity was enhanced by transient HNF4alpha overexpression, whereas mutation of the binding site diminished activation. HNF4alpha overexpression induced endogenous SLC2A9 expression in vitro. The in vivo role of HNF4alpha in the modulation of renal SLC2A9 gene expression was supported by findings of quantitative real-time RT-PCR analyses and chromatin immunoprecipitation assays. Indeed, mRNA expression of SLC2A9 and HNF4alpha in human kidney samples was significantly correlated. We also showed that in renal clear cell carcinoma, downregulation of HNF4alpha mRNA and protein expression was associated with a significant decline in expression of the transporter. Taken together, our data suggest that nuclear receptor family member HNF4alpha contributes to the transcriptional regulation of SLC2A9 isoform 1. Since HNF4alpha has previously been assumed to be a modulator of several urate transporters, our findings support the notion that there could be a transcriptional network providing synchronized regulation of the functional network of the urate transportosome.
机译:用吸收和流出转运蛋白网络实现肾小管处理,包括药物转运蛋白的成员,如溶质载体蛋白和ATP结合盒式磁带转运蛋白。溶质载体家族2,成员9(SLC2A9),是这种所谓的“呼吸迁移体”的一个关键因素。本研究的目的是了解SLC2A9的转录调节,并测试所识别的因素是否可能导致涉及呼吸处理的转运仪的协调转录调节。在硅分析和基于细胞的报告基因测定中鉴定了SLC2A9同种型1的启动子中的肝细胞核因子(HNF)4Alpha结合位点,其活性HNF4Alpha过表达增强,而结合位点的突变减少了活化。 HNF4Alpha过表达诱导体外内源性SLC2A9表达。通过定量实时RT-PCR分析和染色质免疫沉淀测定的结果支持HNF4Alpha在肾脏SLC2A9基因表达调节中的体内作用。实际上,人肾样品中SLC2A9和HNF4Alpha的mRNA表达明显相关。我们还表明,在肾透明细胞癌中,HNF4Alpha mRNA和蛋白质表达的下调与转运蛋白表达的显着下降相关。我们的数据表明,核受体家族成员HNF4Alpha有助于SLC2A9同种型的转录调节1.由于HNF4Alpha先前被认为是几个呼吸转运仪的调节剂,我们的研究结果支持可能有转录网络提供的概念调节尿液传输功能网络的同步调节。

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