首页> 美国卫生研究院文献>Molecular and Cellular Biology >Synergistic activation of ADH2 expression is sensitive to upstream activation sequence 2 (UAS2) orientation copy number and UAS1-UAS2 helical phasing.
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Synergistic activation of ADH2 expression is sensitive to upstream activation sequence 2 (UAS2) orientation copy number and UAS1-UAS2 helical phasing.

机译:ADH2表达的协同激活对上游激活序列2(UAS2)方向拷贝数和UAS1-UAS2螺旋相位敏感。

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摘要

The alcohol dehydrogenase 2 (ADH2) gene of Saccharomyces cerevisiae is under stringent glucose repression. Two cis-acting upstream activation sequences (UAS) that function synergistically in the derepression of ADH2 gene expression have been identified. UAS1 is the binding site for the transcriptional regulator Adr1p. UAS2 has been shown to be important for ADH2 expression and confers glucose-regulated, ADR1-independent activity to a heterologous reporter gene. An analysis of point mutations within UAS2, in the context of the entire ADH2 upstream regulatory region, showed that the specific sequence of UAS2 is important for efficient derepression of ADH2, as would be expected if UAS2 were the binding site for a transcriptional regulatory protein. In the context of the ADH2 upstream regulatory region, including UAS1, working in concert with the ADH2 basal promoter elements, UAS2-dependent gene activation was dependent on orientation, copy number, and helix phase. Multimerization of UAS2, or its presence in reversed orientation, resulted in a decrease in ADH2 expression. In contrast, UAS2-dependent expression of a reporter gene containing the ADH2 basal promoter and coding sequence was enhanced by multimerization of UAS2 and was independent of UAS2 orientation. The reduced expression caused by multimerization of UAS2 in the native promoter was observed only in the presence of ADR1. Inhibition of UAS2-dependent gene expression by Adr1p was also observed with a UAS2-dependent ADH2 reporter gene. This inhibition increased with ADR1 copy number and required the DNA-binding activity of Adr1p. Specific but low-affinity binding of Adr1p to UAS2 in vitro was demonstrated, suggesting that the inhibition of UAS2-dependent gene expression observed in vivo could be a direct effect due to Adr1p binding to UAS2.
机译:酿酒酵母的酒精脱氢酶2(ADH2)基因处于严格的葡萄糖抑制之下。已经鉴定了在ADH2基因表达的抑制中协同作用的两个顺式作用上游激活序列(UAS)。 UAS1是转录调节因子Adr1p的结合位点。 UAS2已被证明对ADH2表达很重要,并赋予异源报告基因葡萄糖调节的,ADR1独立的活性。在整个ADH2上游调节区域的背景下,对UAS2内的点突变的分析表明,UAS2的特定序列对于ADH2的有效抑制非常重要,如UAS2是转录调节蛋白的结合位点所期望的那样。在包括UAS1在内的ADH2上游调控区与ADH2基础启动子元件协同工作的情况下,依赖UAS2的基因激活取决于方向,拷贝数和螺旋相。 UAS2的多聚化或其以相反方向存在会导致ADH2表达下降。相反,UAS2的多聚化增强了包含ADH2基础启动子和编码序列的报告基因的UAS2依赖性表达,并且独立于UAS2方向。仅在ADR1存在的情况下,才能观察到UAS2在天然启动子中多聚引起的表达降低。依赖UAS2的ADH2报告基因也观察到Adr1p抑制UAS2依赖性基因表达。这种抑制随着ADR1拷贝数的增加而增加,并需要Adr1p的DNA结合活性。证明了Adr1p与UAS2的特异性但低亲和力结合,表明在体内观察到的对UAS2依赖性基因表达的抑制可能是Adr1p与UAS2结合的直接作用。

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