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Transcription of the constitutively expressed yeast enolase gene ENO1 is mediated by positive and negative cis-acting regulatory sequences.

机译:组成型表达的酵母烯醇酶基因ENO1的转录是由顺式和反式顺式调节序列介导的。

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摘要

There are two enolase genes, ENO1 and ENO2, per haploid yeast genome. Expression of the ENO1 gene is quantitatively similar in cells grown on glucose or gluconeogenic carbon sources. In contrast, ENO2 expression is induced more than 20-fold in cells grown on glucose as the carbon source. cis-Acting regulatory sequences were mapped within the 5'-flanking region of the constitutively expressed yeast enolase gene ENO1. A complex positive regulatory region was located 445 base pairs (bp) upstream from the transcriptional initiation site which was required for ENO1 expression in cells grown on glycolytic or gluconeogenic carbon sources. A negative regulatory region was located 160 bp upstream from the transcriptional initiation site. Sequences required for the function of this negative regulatory element were mapped to a 38-bp region. Deletion of all or a portion of these latter sequences permitted glucose-dependent induction of ENO1 expression that was quantitatively similar to that of the glucose-inducible ENO2 gene. The negative regulatory element therefore prevents glucose-dependent induction of the ENO1 gene. Hybrid 5'-flanking regions were constructed which contained the upstream regulatory sequences of one enolase gene fused at a site upstream from the TATAAA box in the other enolase gene. Analysis of the expression of enolase genes containing these hybrid 5'-flanking region showed that the positive regulatory regions of ENO1 and ENO2 were functionally similar, as were the regions extending from the TATAAA boxes to the initiation codons. Based on these studies, we conclude that the negative regulatory element plays the critical role in maintaining the constitutive expression of the ENO1 structural gene in cells grown on glucose or gluconeogenic carbon sources.
机译:每个单倍体酵母基因组有两个烯醇酶基因,ENO1和ENO2。在葡萄糖或糖异生碳源上生长的细胞中,ENO1基因的表达在数量上相似。相反,在以葡萄糖为碳源生长的细胞中,ENO2表达被诱导超过20倍。顺式作用调节序列被定位在组成型表达的酵母烯醇酶基因EN01的5'侧翼区域内。复杂的阳性调控区位于转录起始位点上游445个碱基对(bp),这是在糖酵解或糖异生碳源上生长的细胞中ENO1表达所需的。负调控区位于转录起始位点上游160 bp。该负调控元件的功能所需的序列被定位到38bp区域。删除全部或部分这些后面的序列使得葡萄糖依赖性诱导的ENO1表达在数量上类似于葡萄糖诱导的ENO2基因。因此,负调控元件阻止了ENO1基因的葡萄糖依赖性诱导。构建了杂合的5'侧翼区域,其包含一个烯醇酶基因的上游调节序列,该序列在另一烯醇酶基因的TATAAA盒上游的位点融合。分析包含这些杂合的5'侧翼区的烯醇酶基因的表达表明,ENO1和ENO2的正调控区在功能上相似,从TATAAA盒延伸至起始密码子的区域也是如此。基于这些研究,我们得出结论,负调控元件在维持葡萄糖或糖原异源碳源上生长的细胞中ENO1结构基因的组成型表达中起关键作用。

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