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首页> 外文期刊>Journal of Neuroscience Research >Sox10 acts as a tissue-specific transcription factor enhancing activation of the myelin basic protein gene promoter by p27Kip1 and Sp1.
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Sox10 acts as a tissue-specific transcription factor enhancing activation of the myelin basic protein gene promoter by p27Kip1 and Sp1.

机译:Sox10作为组织特异性转录因子,可增强p27Kip1和Sp1对髓鞘碱性蛋白基因启动子的激活。

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Myelin basic protein (MBP) is one of the major components of the myelin sheath that insulates axons. In the central nervous system, MBP is synthesized by differentiating oligodendrocytes. The expression of MBP in oligodendrocytes is regulated mainly at the transcriptional level. The Sp1 family of transcription factors has been shown to be important in the regulation of many genes. Binding of Sp1 to the GC box in the proximal MBP promoter has been shown to be indispensable for the activation of MBP gene expression. Previous results from our laboratory have shown that the increase in p27Kip1 that accompanies oligodendrocyte differentiation is paralleled by an increase in Sp1. We also have shown that the increase in MBP expression resulting from elevated p27Kip1 levels is mediated through Sp1 and that this effect occurs specifically in oligodendrocytes. In this study, we found that increased expression of p27Kip1 together with the nervous-system-specific transcription factor Sox10 can activate the MBP promoter even in nonoligodendrocyte cells. This indicates that Sox10 confers cell type specificity on the expression of MBP. Both Sp1 and Sox10 can enhance MBP promoter activity when expressed alone. Cotransfection of plasmids encoding Sp1 and Sox10 induces increased activation of the MBP promoter over expression of either transcription factor alone. This effect is not limited to oligodendrocyte cell lines, in that Sp1 and Sox10 can also synergistically activate the MBP promoter when expressed in NIH3T3 fibroblasts. Mutation of the Sp1 binding sites in the MBP promoter eliminates Sox10 stimulated activation, suggesting that the MBP promoter is activated, at least in part, through protein-protein interactions between Sp1 and Sox10.
机译:髓磷脂碱性蛋白(MBP)是使轴突绝缘的髓鞘的主要成分之一。在中枢神经系统中,MBP是通过分化少突胶质细胞合成的。 MBP在少突胶质细胞中的表达主要受转录水平的调节。 Sp1家族的转录因子已被证明在许多基因的调控中很重要。已经证明Sp1与近端MBP启动子中的GC盒结合对于MBP基因表达的激活是必不可少的。我们实验室的先前结果表明,少突胶质细胞分化伴随的p27Kip1的增加与Sp1的增加平行。我们还表明,由升高的p27Kip1水平引起的MBP表达的增加是通过Sp1介导的,并且这种作用特别发生在少突胶质细胞中。在这项研究中,我们发现p27Kip1的表达增加与神经系统特异性转录因子Sox10一起可以激活MBP启动子,即使在非少突胶质细胞中也是如此。这表明Sox10将细胞类型特异性赋予MBP表达。当单独表达时,Sp1和Sox10均可增强MBP启动子活性。编码Sp1和Sox10的质粒的共转染诱导了MBP启动子的激活增加,超过了任一转录因子的表达。这种作用不仅限于少突胶质细胞,因为Sp1和Sox10在NIH3T3成纤维细胞中表达时也可以协同激活MBP启动子。 MBP启动子中Sp1结合位点的突变消除了Sox10刺激的激活,这表明MBP启动子至少部分地通过Sp1和Sox10之间的蛋白质相互作用来激活。

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