Kotagiri S, Edenberg H J
Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis 46202-5122, USA.
DNA Cell Biol. 1998 Jul;17(7):583-90. doi: 10.1089/dna.1998.17.583.
The structure and function of the human alcohol dehydrogenase 7 (ADH7) promoter were analyzed. A promoter fragment extending to bp -232 functioned well in H4IIE-C3, CV-1, and HeLa cells, whereas the region extending further upstream to bp -799 had no significant effect on activity. We identified cis-acting elements in the proximal 232 bp and examined their effect on promoter activity. Mutation of site A, where c-Jun bound, caused a drastic decrease in the promoter activity in H4IIE-C3 and CV-1 cells, suggesting that AP-1 plays an important role in the regulation of ADH7. Mutation of site B also caused a large drop in promoter activity in both cell lines; C/EBPalpha can bind to this site, but because the site affects activity approximately equally in CV-1 cells that lack C/EBPalpha and in H4IIE-C3 cells that contain low levels, other proteins are likely to play the major roles in vivo. Mutation of site C, where C/EBP bound and c-Jun bound weakly, had different effects in the two cell lines: in H4IIE-C3 cells, the site C mutation did not significantly increase promoter activity, whereas in CV-1 cells, which lack C/EBPalpha, it led to a doubling of activity. Surprisingly, cotransfection of the wild-type promoter with C/EBPa or C/EBPbeta led to a decrease in promoter activity, which might in part explain the lack of activity of ADH7 in adult liver.
对人乙醇脱氢酶7(ADH7)启动子的结构和功能进行了分析。延伸至-232 bp的启动子片段在H4IIE-C3、CV-1和HeLa细胞中功能良好,而进一步向上游延伸至-799 bp的区域对活性没有显著影响。我们在近端232 bp中鉴定了顺式作用元件,并研究了它们对启动子活性的影响。c-Jun结合的位点A发生突变,导致H4IIE-C3和CV-1细胞中的启动子活性急剧下降,这表明AP-1在ADH7的调控中起重要作用。位点B发生突变也导致两种细胞系中的启动子活性大幅下降;C/EBPα可以结合到该位点,但由于该位点在缺乏C/EBPα的CV-1细胞和含有低水平C/EBPα的H4IIE-C3细胞中对活性的影响大致相同,因此其他蛋白质可能在体内起主要作用。C/EBP结合且c-Jun弱结合的位点C发生突变,在两种细胞系中产生了不同的影响:在H4IIE-C3细胞中,位点C突变并未显著增加启动子活性,而在缺乏C/EBPα的CV-1细胞中,它导致活性增加了一倍。令人惊讶的是,野生型启动子与C/EBPα或C/EBPβ共转染导致启动子活性降低,这可能部分解释了ADH7在成年肝脏中缺乏活性的原因。