首页> 美国卫生研究院文献>Molecular and Cellular Biology >Sequences within an upstream activation site in the yeast enolase gene ENO2 modulate repression of ENO2 expression in strains carrying a null mutation in the positive regulatory gene GCR1.
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Sequences within an upstream activation site in the yeast enolase gene ENO2 modulate repression of ENO2 expression in strains carrying a null mutation in the positive regulatory gene GCR1.

机译:酵母烯醇酶基因ENO2上游激活位点内的序列可调节在阳性调控基因GCR1中带有无效突变的菌株中ENO2表达的抑制。

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摘要

Transcription of the yeast enolase gene ENO2 is reduced 20- to 50-fold in strains carrying a null mutation in the positive regulatory gene GCR1. A small deletion mutation within one of two upstream activation sites (UAS elements) in the 5'-flanking region of ENO2 permitted wild-type levels of ENO2 gene expression in a strain carrying the gcr1 null mutation. These data show that sequences required for UAS element activity in GCR1 strains were required to repress ENO2 expression in a gcr1 strain. Protein factors that specifically bound to this UAS/repression site were identified. We show that the DNA-binding protein ABFI (autonomously replicating sequence-binding factor) is the major protein which binds the UAS/repression site. Minor DNA-binding activities that interact specifically with the UAS/repression site were also identified and may correspond to proteolytic breakdown products of ABFI. None of the observed binding activities were encoded by the GCR1 structural gene. A double-stranded oligonucleotide that included the UAS/repression site activated transcription of UAS-less ENO1 and ENO2 gene cassettes in vivo to wild-type levels in strains carrying the GCR1 allele as well as the gcr1 null mutation. These latter data show that the UAS/repression site is sufficient for transcriptional activation but is not sufficient to repress transcription of the enolase genes in a gcr1 genetic background.
机译:在阳性调节基因GCR1中携带无效突变的菌株中,酵母烯醇酶基因ENO2的转录降低20到50倍。 ENO2 5'侧翼区域的两个上游激活位点(UAS元件)之一内的一个小缺失突变允许携带gcr1无效突变的菌株中ENO2基因表达的野生型水平。这些数据表明,GCR1菌株中UAS元素活性所需的序列是抑制gcr1菌株中ENO2表达的必需条件。鉴定了与该UAS /抑制位点特异性结合的蛋白质因子。我们表明,DNA结合蛋白ABFI(自主复制序列结合因子)是结合UAS /抑制位点的主要蛋白。还确定了与UAS /抑制位点特异性相互作用的次要DNA结合活性,这些活性可能与ABFI的蛋白水解降解产物相对应。观察到的结合活性均未由GCR1结构基因编码。在携带GCR1等位基因以及gcr1无效突变的菌株中,包含UAS /阻遏位点的双链寡核苷酸在体内将无UAS的ENO1和ENO2基因盒的转录激活为野生型水平。这些后面的数据表明,UAS /阻遏位点足以进行转录激活,但不足以阻遏gcr1遗传背景下烯醇酶基因的转录。

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