Herrero P, Ramírez M, Martínez-Campa C, Moreno F
Instituto Universitario de Biotecnología de Asturias (IUBA), Departamento de Bioquímica y Biologia Molecular, Universidad de Oviedo, Spain.
Nucleic Acids Res. 1996 May 15;24(10):1822-8. doi: 10.1093/nar/24.10.1822.
A well-defined set of isogenic yeast strains has been constructed whereby each strain contains a different HXK2::lacZ gene fusion integrated at the URA3 locus. These HXK2::lacZ fusions differ in the amount of the HXK2 gene (encoding hexokinase 2 isoenzyme) that is fused to the lacZ reporter gene. Comparison of the beta-galactosidase activities of each strain during growth on glucose or ethanol revealed that some part of the coding region between +39 and +404 bp is involved in repressing gene expression in a carbon source dependent manner. A series of deletions of this HXK2 coding region were constructed and fused upstream of a minimal CYC1::lacZ promoter. beta-Galactosidase activities on glucose or ethanol growth yeast calls revealed that two different regulatory elements are present in this DNA region. Gel mobility shift analysis and in vitro DNase I footprinting have shown that proteins bind specifically to two downstream repressor sequences (DRS1 located from +140 to +163 and DRS2 located between +231 and +251) that influence the rate of HXK2 transcription when ethanol is used as carbon source by Saccharomyces cerevisiae. We identified and partially purified a 18 kDa protein that binds specifically to synthetic double-stranded oligonucleotides containing the (A/C)(A/G)GAAAT box sequence. Our data suggest that p18 synthesis is under the control of genes involved in glucose repression (MIG1 = CAT4) and glucose derepression (SNF1 = CAT1).
已经构建了一组明确的同基因酵母菌株,其中每个菌株都含有一个整合在URA3位点的不同的HXK2::lacZ基因融合体。这些HXK2::lacZ融合体在与lacZ报告基因融合的HXK2基因(编码己糖激酶2同工酶)的量上有所不同。对每个菌株在葡萄糖或乙醇上生长期间的β-半乳糖苷酶活性进行比较,结果表明,+39至+404 bp之间的编码区的某些部分以碳源依赖性方式参与抑制基因表达。构建了该HXK2编码区的一系列缺失,并将其融合在最小CYC1::lacZ启动子的上游。对在葡萄糖或乙醇上生长的酵母细胞进行β-半乳糖苷酶活性分析,结果表明该DNA区域存在两种不同的调控元件。凝胶迁移率变动分析和体外DNase I足迹分析表明,蛋白质特异性结合到两个下游阻遏序列(DRS1位于+140至+163,DRS2位于+231至+251),当酿酒酵母将乙醇用作碳源时,这些序列会影响HXK2的转录速率。我们鉴定并部分纯化了一种18 kDa的蛋白质,该蛋白质特异性结合含有(A/C)(A/G)GAAAT框序列的合成双链寡核苷酸。我们的数据表明,p18的合成受参与葡萄糖阻遏(MIG1 = CAT4)和葡萄糖去阻遏(SNF1 = CAT1)的基因的控制。