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首页> 外文期刊>Molecular and Cellular Biology >Melanocyte-specific gene expression: role of repression and identification of a melanocyte-specific factor, MSF.
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Melanocyte-specific gene expression: role of repression and identification of a melanocyte-specific factor, MSF.

机译:黑色素细胞特异性基因表达:抑制和鉴定黑色素细胞特异性因子MSF的作用。

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For a gene to be transcribed in a tissue-specific fashion, expression must be achieved in the appropriate cell type and also be prevented in other tissues. As an approach to understanding the regulation of tissue-specific gene expression, we have analyzed the requirements for melanocyte-specific expression of the tyrosinase-related protein 1 (TRP-1) promoter. Positive regulation of TRP-1 expression is mediated by both an octamer-binding motif and an 11-bp element, termed the M box, which is conserved between the TRP-1 and other melanocyte-specific promoters. We show here that, consistent with its ability to activate transcription in a non-tissue-specific fashion, the M box binds the basic-helix-loop-helix factor USF in vitro. With the use of a combination of site-directed mutagenesis and chimeric promoter constructs, additional elements involved in regulating TRP-1 expression were identified. These include the TATA region, which appears to contribute to the melanocyte specificity of the TRP-1 promoter. Mutational analysis also identified two repressor elements, one at the start site, the other located at -240, which function both in melanoma and nonmelanoma cells. In addition, a melanocyte-specific factor, MSF, binds to sites which overlap both repressor elements, with substitution mutations demonstrating that binding by MSF is not required for repression. Although a functional role for MSF has not been unequivocally determined, the location of its binding sites leads us to speculate that it may act as a melanocyte-specific antirepressor during transcription of the endogenous TRP-1 gene.
机译:为了以组织特异性方式转录基因,必须在适当的细胞类型中实现表达,并且还必须在其他组织中阻止表达。作为了解组织特异性基因表达调控的一种方法,我们分析了酪氨酸酶相关蛋白1(TRP-1)启动子对黑素细胞特异性表达的要求。八聚体结合基序和称为M盒的11 bp元素介导TRP-1表达的正调控,它在TRP-1和其他黑素细胞特异性启动子之间是保守的。我们在这里显示,与其以非组织特异性方式激活转录的能力一致,M盒在体外结合了基本螺旋-环-螺旋因子USF。通过使用定点诱变和嵌合启动子构建体的组合,鉴定了参与调节TRP-1表达的其他元件。这些包括TATA区,该区似乎有助于TRP-1启动子的黑素细胞特异性。突变分析还确定了两个阻遏元件,一个位于起始位点,另一个位于-240,在黑素瘤和非黑素瘤细胞中均起作用。此外,黑素细胞特异性因子MSF结合到重叠两个阻遏物元件的位点,取代突变表明抑制不需要MSF的结合。尽管尚未明确确定MSF的功能性角色,但其结合位点的位置使我们推测其在内源性TRP-1基因转录过程中可能充当黑素细胞特异性抗阻遏物。

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