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Adenovirus transcriptional regulatory regions are conserved in mammalian cells and Saccharomyces cerevisiae.

机译:腺病毒转录调控区在哺乳动物细胞和酿酒酵母中是保守的。

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摘要

The adenovirus early region 3 (E3) promoter is an early viral promoter which is strongly induced by the adenovirus transactivator protein E1A. DNase I footprinting with HeLa cell extracts has identified four factor-binding domains which appear to be involved in basal and E1A-induced transcriptional regulation. These binding domains may bind TATA region-binding factors (site I), the CREB/ATF protein (site II), the AP-1 protein (site III), and nuclear factor I/CTF (site IV). Recently, it has been shown that the DNA-binding domain of transcription factor AP-1 has homology with the yeast transcription factor GCN4 and that the yeast transactivator protein GAL4 is able to stimulate transcription in HeLa cells from promoters containing GAL4-binding sites. These results suggest an evolutionary conservation of both transcription factors and the mechanisms responsible for transcriptional activation in Saccharomyces cerevisiae and higher eucaryotic organisms. To determine whether similar patterns of transcriptional regulation were seen with the E3 promoter in HeLa and yeast cells, the E3 promoter fused to the chloramphenicol acetyltransferase (cat) gene was cloned into a high-copy-number plasmid and stably introduced into yeast cells. S1 analysis revealed that similar E3 promoter mRNA start sites were found in yeast and HeLa cells. DNase I footprinting with partially purified yeast extracts revealed that four regions of the E3 promoter were protected. Several of these regions were similar to binding sites determined by using HeLa cell extracts. Oligonucleotide mutagenesis of these binding domains indicated their importance in the transcriptional regulation of the E3 promoter in yeast cells. These results suggest that similar cellular transcription factor-binding sites may be involved in the regulation of promoters in both yeast and mammalian cells.
机译:腺病毒早期区域3(E3)启动子是一种早期病毒启动子,被腺病毒反式激活蛋白E1A强烈诱导。用HeLa细胞提取物进行的DNase I足迹检测已鉴定出四个似乎与基础和E1A诱导的转录调控有关的因子结合域。这些结合结构域可以结合TATA区域结合因子(位点I),CREB ​​/ ATF蛋白(位点II),AP-1蛋白(位点III)和核因子I / CTF(位点IV)。最近,已经表明转录因子AP-1的DNA结合结构域与酵母转录因子GCN4具有同源性,并且酵母反式激活蛋白GAL4能够在HeLa细胞中刺激来自含有GAL4结合位点的启动子的转录。这些结果表明,在酿酒酵母和高等真核生物中,转录因子和负责转录激活的机制均具有进化保守性。为了确定在HeLa和酵母细胞中是否观察到E3启动子具有类似的转录调控模式,将与氯霉素乙酰转移酶(cat)基因融合的E3启动子克隆到高拷贝数质粒中,并稳定引入酵母细胞中。 S1分析显示,在酵母和HeLa细胞中发现了相似的E3启动子mRNA起始位点。用部分纯化的酵母提取物进行的DNase I足迹分析表明,E3启动子的四个区域均受到保护。这些区域中的几个与使用HeLa细胞提取物确定的结合位点相似。这些结合结构域的寡核苷酸诱变表明它们在酵母细胞中E3启动子的转录调控中的重要性。这些结果表明相似的细胞转录因子结合位点可能参与酵母和哺乳动物细胞中启动子的调节。

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