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A Short 5-Flanking Region Mediates Glucose Repression of Amylase Gene Expression in Drosophila Melanogaster

机译:一个短的5侧翼区域介导果蝇黑糖淀粉酶基因表达的葡萄糖抑制。

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摘要

Expression of the α-amylase gene is highly repressed by dietary glucose in Drosophila melanogaster larvae. Here, we show that glucose repression is controlled by DNA sequences that are located upstream of the transcribed region. Recombinant gene constructions, in which the amylase promoter sequences were fused with the transcribed region of the Adh gene, were expressed in transgenic Drosophila larvae. The expression of ADH from the recombinant gene was shown to be subject to glucose repression. The function of potential regulatory cis-acting elements within the glucose responsive upstream region was examined by deletion analysis and by site-directed mutagenesis, coupled with expression assays in transformed larvae. The upstream deletion analysis showed that essential elements, both for overall activity and for glucose repression of the amylase gene, are located within a 109-bp region upstream of the transcription start site. Site-directed mutagenesis of these upstream sequences showed that the TATA motif, at position -31, and a novel 36-bp element, at position -109, were necessary for full activity of the amylase promoter. None of the introduced mutations resulted in loss of glucose responsiveness. These results indicate that glucose repression, in Drosophila, is mediated by transcriptional mechanisms that involve multiple, functionally redundant DNA elements.
机译:日粮葡萄糖在果蝇幼虫中高度抑制了α-淀粉酶基因的表达。在这里,我们显示了葡萄糖阻遏是由位于转录区域上游的DNA序列控制的。在转基因果蝇幼虫中表达重组基因结构,其中淀粉酶启动子序列与Adh基因的转录区融合。显示重组基因中ADH的表达受到葡萄糖抑制。通过缺失分析和定点诱变,以及在转化的幼虫中的表达测定,检查了葡萄糖反应性上游区域内潜在的调控顺式作用元件的功能。上游缺失分析表明,对于淀粉酶基因的总体活性和葡萄糖抑制而言,必需元素都位于转录起始位点上游的109 bp区域内。这些上游序列的定点诱变显示,对于淀粉酶启动子的完整活性,在-31位的TATA基序和在-109位的新型36 bp元件是必需的。引入的突变均未导致葡萄糖反应性的丧失。这些结果表明,果蝇中的葡萄糖阻抑是由涉及多个功能上冗余的DNA元件的转录机制介导的。

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