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首页> 外文期刊>The biochemical journal >CpG methylation at the USF-binding site mediates cell-specific transcription of human ascorbate transporter SVCT2 exon 1a
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CpG methylation at the USF-binding site mediates cell-specific transcription of human ascorbate transporter SVCT2 exon 1a

机译:USF结合位点处的CpG甲基化介导人类抗坏血酸转运蛋白SVCT2外显子1a的细胞特异性转录

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pSVCT2 (sodium–vitamin C co-transporter 2) is the major transporter mediating vitamin C uptake in most organs. Its expression is driven by two promoters (CpG-poor exon 1a promoter and CpG-rich exon 1b promoter). In the present study, we mapped discrete elements within the proximal CpG-poor promoter responsible for exon 1a transcription. We identified two E boxes for USF (upstream stimulating factor) binding and one Y box for NF-Y (nuclear factor Y) binding. We show further that NF-Y and USF bind to the exon 1a promoter in a co-operative manner, amplifying the binding of each to the promoter, and is absolutely required for the full activity of the exon 1a promoter. The analysis of the CpG site located at the upstream USF-binding site in the promoter showed a strong correlation between expression and demethylation. It was also shown that exon 1a transcription was induced in cell culture treated with the demethylating agent decitabine. The specific methylation of this CpG site impaired both the binding of USF and the formation of the functional NF-Y–USF complex as well as promoter activity, suggesting its importance for cell-specific transcription. Thus CpG methylation at the upstream USF-binding site functions in establishing and maintaining cell-specific transcription from the CpG-poor SVCT2 exon 1a promoter./p
机译:> SVCT2(钠-维生素C辅助转运蛋白2)是介导大多数器官摄取维生素C的主要转运蛋白。它的表达由两个启动子驱动(贫CpG外显子1a启动子和富CpG外显子1b启动子)。在本研究中,我们在负责外显子1a转录的近端CpG缺乏启动子内定位了离散元件。我们确定了两个E框用于USF(上游刺激因子)结合,一个Y盒用于NF-Y(核因子Y)结合。我们进一步表明,NF-Y和USF以合作的方式与外显子1a启动子结合,放大了每个与外显子的结合,并且绝对是外显子1a启动子的全部活性所必需的。对位于启动子上游USF结合位点的CpG位点的分析显示,表达与去甲基化之间具有很强的相关性。还显示在用去甲基化剂地西他滨处理的细胞培养物中诱导外显子1a转录。此CpG位点的特异性甲基化会损害USF的结合以及功能性NF-Y-USF复合物的形成以及启动子活性,这表明其对细胞特异性转录很重要。因此,USF结合位点上游的CpG甲基化在建立和维持CpG贫乏的SVCT2外显子1a启动子的细胞特异性转录中发挥作用。

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