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首页> 外文期刊>The biochemical journal >The helix-loop-helix transcription factor USF (upstream stimulating factor) binds to a regulatory sequence of the human insulin gene enhancer
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The helix-loop-helix transcription factor USF (upstream stimulating factor) binds to a regulatory sequence of the human insulin gene enhancer

机译:螺旋-环-螺旋转录因子USF(上游刺激因子)与人胰岛素基因增强子的调控序列结合

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pTwo important sequence elements, designated insulin enhancer binding site 1 (IEB1) or NIR and IEB2 or FAR, are involved in regulating expression of the rat insulin I gene. These elements bind a helix-loop-helix transcription factor, insulin enhancer factor 1 (IEF1). The IEB1 site is highly conserved among insulin genes but the IEB2 site is not conserved. To investigate the factors binding at the equivalent IEB1 and IEB2 sites in the human insulin gene enhancer, electrophoretic mobility shift assays were performed using a variety of cell extracts and probes specific for the homologous IEB1 and IEB2 sites. The results indicate that a factor with similar tissue distribution and binding characteristics to those of IEF1 binds to the IEB1 site in the human insulin gene, but that a separate factor, identified as the adenovirus major late transcription factor [MLTF, or upstream stimulating factor (USF)] binds to the IEB2 site./p
机译:>两个重要的序列元件,称为胰岛素增强子结合位点1(IEB1)或NIR和IEB2或FAR,参与调节大鼠胰岛素I基因的表达。这些元素结合螺旋-环-螺旋转录因子,胰岛素增强因子1(IEF1)。 IEB1位点在胰岛素基因中高度保守,但IEB2位点不是保守的。为了研究在人胰岛素基因增强剂中等效的IEB1和IEB2位点结合的因子,使用了多种细胞提取物和特异于同源IEB1和IEB2位点的探针进行了电泳迁移率迁移分析。结果表明,具有与IEF1相似的组织分布和结合特性的因子与人胰岛素基因中的IEB1位点结合,但是被鉴定为腺病毒主要晚期转录因子[MLTF,或上游刺激因子( USF)]绑定到IEB2网站。

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