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Protein-DNA interactions at the major and minor promoters of the divergently transcribed dhfr and rep3 genes during the Chinese hamster ovary cell cycle.

机译:在中国仓鼠卵巢细胞周期中转录的dhfr和rep3基因的主要和次要启动子处的蛋白质-DNA相互作用。

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摘要

In mammals, two TATA-less bidirectional promoters regulate expression of the divergently transcribed dihydrofolate reductase (dhfr) and rep3 genes. In CHOC 400 cells, dhfr mRNA levels increase about fourfold during the G1-to-S phase transition of the cell cycle, whereas the levels of rep3 transcripts vary less than twofold during this time. To assess the role of DNA-binding proteins in transcriptional regulation of the dhfr and rep3 genes, the major and minor dhfr-rep3 promoter regions were analyzed by high-resolution genomic footprinting during the cell cycle. At the major dhfr promoter, prominent DNase I footprints over four upstream Sp1 binding sites did not vary throughout G1 and entry into the S phase. Genomic footprinting revealed that a protein is constitutively bound to the overlapping E2F sites throughout the G1-to-S phase transition, an interaction that is most evident on the transcribed template strand. On the nontranscribed strand, multiple changes in the DNase I cleavage pattern are observed during transit through G1 and entry into the S phase. By using gel mobility shift assays and a series of sequence-specific probes, two different species of E2F were shown to interact with the dhfr promoter during the cell cycle. The DNA binding activity of one E2F species, which preferentially recognizes the sequence TTTGGCGC, did not vary significantly during the cell cycle. The DNA binding activity of the second E2F species, which preferentially recognizes the sequence TTTCGCGC, increased during the G1-to-S phase transition. Together, these results indicate that Sp1 and the species of E2F that binds TTTGGCGC participate in the formation of a basal transcription complex, while the species of E2F that binds TTTCGCGC regulates dhfr gene expression during the G1-to-S phase transition. At the minor promoter, DNase I footprints at a consensus c-Myc binding site and three Sp1 binding sites showed little variation during the G1-to-S phase transition. In addition to protein binding at sequences known to be involved in the regulation of transcription, genomic footprinting of the entire promoter region also showed that a protein factor is constitutively bound to the first intron of the rep3 gene.
机译:在哺乳动物中,两个不含TATA的双向启动子调节发散转录的二氢叶酸还原酶(dhfr)和rep3基因的表达。在CHOC 400细胞中,dhfr mRNA水平在细胞周期从G1到S的过渡过程中增加约四倍,而rep3转录物的水平在此期间变化不到两倍。为了评估DNA结合蛋白在dhfr和rep3基因的转录调控中的作用,在细胞周期内通过高分辨率基因组足迹分析了主要和次要dhfr-rep3启动子区域。在主要的dhfr启动子上,在整个G1和进入S期时,四个上游Sp1结合位点上的突出DNase I足迹没有变化。基因组足迹表明,蛋白质在整个G1到S的相变过程中与重叠的E2F位点组成性结合,这种相互作用在转录的模板链上最为明显。在非转录链上,在通过G1传递并进入S期的过程中观察到DNase I切割模式的多个变化。通过使用凝胶迁移率迁移分析和一系列序列特异性探针,显示了两种不同的E2F物种在细胞周期中与dhfr启动子相互作用。一种优先识别序列TTTGGCGC的E2F物种的DNA结合活性在细胞周期中没有显着变化。在G1到S的相变过程中,优先识别序列TTTCGCGC的第二个E2F物种的DNA结合活性增加。总之,这些结果表明,Sp1和与TTTGGCGC结合的E2F物种参与了基础转录复合物的形成,而与TTTCGCGC结合的E2F物种在G1到S的相变过程中调节dhfr基因的表达。在次要启动子处,在共有的c-Myc结合位点和三个Sp1结合位点处的DNase I足迹在G1到S的相变期间几乎没有变化。除了在已知参与转录调节的序列上结合蛋白质外,整个启动子区域的基因组足迹也显示蛋白质因子与rep3基因的第一个内含子组成性结合。

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