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首页> 外文期刊>American Journal of Physiology >Mechanisms of transcriptional modulation of the human anion exchanger SLC26A3 gene expression by IFN-{gamma}.
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Mechanisms of transcriptional modulation of the human anion exchanger SLC26A3 gene expression by IFN-{gamma}.

机译:IFN-γ对人类阴离子交换子SLC26A3基因表达的转录调控机制。

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摘要

Two members of the SLC26 gene family, SLC26A3 or DRA (downregulated in adenoma) and SLC26A6 (putative anion transporter 1, PAT1), are known to play a major role in apical Cl(-)/OH(-) (HCO(3)(-)) exchange process in the human intestine. We have previously shown the inhibitory effects of IFN-gamma (30 ng/ml, 24 h) on both SLC26A3 and A6 expression and promoter activity. We also demonstrated that the effects of IFN-gamma on SLC26A6 gene expression were mediated via IRF-1 transcription factor. However, the molecular mechanisms underlying the transcriptional modulation of SLC26A3 gene expression by IFN-gamma in the intestine are not known. The present studies were, therefore, designed to elucidate the signaling mechanisms and transcription factor(s) involved in mediating the inhibitory effects of IFN-gamma on DRA promoter (p--1183/+114) activity. Deletion analysis indicated that the IFN-gamma response element is located within the -1183 to -790 region, and sequence analysis of this region revealed the presence of potential gamma-activated site (GAS), a binding site (-933/-925 bp) for signal transducer and activator of transcription factor 1 (STAT1). Mutations in the potential GAS element abrogated the inhibitory effects of IFN-gamma. These studies provide evidence for the involvement of STAT1 in the inhibition of SLC26A3 gene expression by IFN-gamma in the human intestine.
机译:已知SLC26基因家族的两个成员SLC26A3或DRA(在腺瘤中下调)和SLC26A6(推定的阴离子转运蛋白1,PAT1)在顶端Cl(-)/ OH(-)(HCO(3))中起主要作用(-))在人体肠道中的交换过程。我们之前已经显示了IFN-γ(30 ng / ml,24 h)对SLC26A3和A6表达以及启动子活性的抑制作用。我们还证明,IFN-γ对SLC26A6基因表达的影响是通过IRF-1转录因子介导的。然而,肠中IFN-γ对SLC26A3基因表达的转录调控的潜在分子机制尚不清楚。因此,本研究旨在阐明参与介导IFN-γ对DRA启动子(p--1183 / + 114)活性的抑制作用的信号传导机制和转录因子。缺失分析表明,IFN-γ反应元件位于-1183至-790区域内,对该区域的序列分析表明存在潜在的γ-激活位点(GAS),即结合位点(-933 / -925 bp ),用于转录因子1(STAT1)的信号转导和激活。潜在GAS元素的突变消除了IFN-γ的抑制作用。这些研究为STAT1参与人肠道中IFN-γ抑制SLC26A3基因表达提供了证据。

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