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Multi-Scale Genetics of Transcription Network: Understanding the Regulatory Roles of All 300 Transcription Factors from a Single Organism Escherichia coli

机译:转录网络的多尺度遗传学:了解来自单一有机体大肠杆菌的所有300种转录因子的调节作用

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The modulation of gene selectivity of RNA polymerase is the key step in the bacterial response to environmental changes. The gene selectivity of RNA polymerase is modulated after interaction with seven species of sigma factor, the promoter recognition subunit, and a total of about 300 DNA-binding transcription factors in the second step. In order to get insights into the molecular mechanisms underlying the global regulation of genome expression, our effort has been focused on the identification of genes and promoters under the control of each transcription factor. For this purpose, we have developed the 'Genomic SELEX' system, which allows the quick identification of DNA sequences recognized in vitro by transcription factors. Regulation in vivo of the target genes predicted after the 'Genomic SELEX' was examined by analysis of individual transcripts in the presence and absence of the test transcription factors. The regulated promoter activity was also examined using the newly constructed two-fluorescent-protein promoter assay vector pGRP. Results altogether indicate the involvement of complex networks between transcription factors and promoters in the global regulation of genome transcription.
机译:RNA聚合酶的基因选择性的调节是对环境变化的细菌反应的关键步骤。在与七种Sigma因子,启动子识别亚基的相互作用后调节RNA聚合酶的基因选择性,并且在第二步骤中的总共约300个DNA结合转录因子。为了让洞察到全球基因组表达的全球调节的分子机制,我们的努力一直专注于在每种转录因子的控制下鉴定基因和启动子。为此目的,我们开发了“基因组SELEX”系统,其允许通过转录因子进行体外认识到的DNA序列的快速鉴定。通过在存在和不存在试验转录因子的情况下分析单个转录物预测的靶基因的体内调节。还使用新构建的双荧光蛋白启动子测定载体PGRP检查调节的启动子活性。结果完全指出了在全球基因组转录中转录因子和启动子之间的复杂网络的参与。

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