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The characterisation of the human Wolfram syndrome gene promoter demonstrating regulation by Sp1 and Sp3 transcription factors

机译:人Wolfram综合征基因启动子的表征,表明受Sp1和Sp3转录因子调控

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Wolfram Syndrome (DIDMOAD) is an autosomal recessive disorder characterised by insulin deficient diabetes mellitus and neurodegeneration. Mutations in a novel gene, WFS1, were found in nearly all patients and segregated with the disease. The WFS1 gene is expressed in all tissue types studied and the 890aa protein product is localised to the endoplasmic reticulum (ER). In this study, we used a combination of reporter assays and in vitro and in vivo transcription factor binding assays to analyse the regulation of expression of the human WFS1 gene in neuronal derived cells. A single transcription start site was mapped and a minimal promoter identified within 25 bp upstream of this site. This minimal promoter contains two DNA binding motifs (GC boxes) for the transcription factors Sp1/3/4 and binding of both Sp1 and Sp3 was demonstrated at both motifs in vitro and in vivo. The presence of intact GC boxes is essential for minimal promoter action. Thus, transcription factors of the Sp family are important regulators of the WFS1 promoter. A further up-regulating control region was identified containing three CCAAT box binding motifs; all demonstrated a reduction in expression after mutation. One CCAAT box represented part of a predicted ER stress response element. (c) 2006 Elsevier B.V. All rights reserved.
机译:Wolfram综合症(DIDMOAD)是一种常染色体隐性遗传疾病,其特征在于胰岛素缺乏型糖尿病和神经变性。几乎在所有患者中都发现了一种新基因WFS1的突变,并与该疾病隔离。 WFS1基因在所有研究的组织类型中表达,并且890aa蛋白产物位于内质网(ER)。在这项研究中,我们结合使用了记者检测方法以及体外和体内转录因子结合检测方法,以分析人WFS1基因在神经元衍生细胞中的表达调控。绘制单个转录起始位点,并在该位点上游25 bp内鉴定出最小启动子。这个最小的启动子包含两个DNA结合基序(GC框)用于转录因子Sp1 / 3/4,并且在体内和体外两个基序上都显示了Sp1和Sp3的结合。完整的GC盒的存在对于最小化启动子作用至关重要。因此,Sp家族的转录因子是WFS1启动子的重要调控因子。鉴定出进一步的上调对照区域,其包含三个CCAAT盒结合基序。均显示突变后表达降低。一个CCAAT框表示预测的ER应力响应元素的一部分。 (c)2006 Elsevier B.V.保留所有权利。

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