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The organization of open complexes between Escherichia coli RNA polymerase and DNA fragments carrying promoters either with or without consensus -35 region sequences.

机译:大肠杆菌RNA聚合酶和带有启动子的DNA片段之间的开放复合物的组织该启动子有或没有共有-35区序列。

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摘要

Transcription initiation at the Escherichia coli galP1 promoter does not depend on specific nucleotide sequences in the -35 region. Footprint analysis of transcriptionally competent complexes between E. coli RNA polymerase and DNA fragments carrying galP1 shows that RNA polymerase protects sequences as far upstream as -55, whereas sequences around the -35 region are exposed. In contrast, with galP1 derivatives carrying -35 region sequences resembling the consensus, RNA polymerase protects bases as far as -45, and the -35 region is fully protected. Taken together, our data suggest that the overall architecture of RNA polymerase-promoter complexes can vary according to whether or not consensus -35 region sequences are present; in the absence of these sequences, open complex formation requires distortion of the promoter DNA. However, the unwinding of promoter DNA around the transcription start is not affected by the nature of the -35 region sequence. With a galP1 derivative carrying point mutations in the spacer region that greatly reduce promoter activity, the protection of bases by RNA polymerase around the -10 sequence and transcription start site is reduced. In contrast, protection of the region upstream of -25 is unaffected by the spacer mutations, although sequences from -46 to -54 become hypersensitive to attack by potassium permanganate, indicating severe distortion or kinking of this zone. We suggest that, with this galP1 derivative, RNA polymerase is blocked in a complex that is an intermediate on the path to open complex formation.
机译:大肠杆菌galP1启动子的转录起始不依赖于-35区的特定核苷酸序列。大肠杆菌RNA聚合酶和带有galP1的DNA片段之间的转录感受态复合物的足迹分析表明,RNA聚合酶可保护远至-55上游的序列,而-35区域附近的序列则暴露在外。相反,对于带有类似共有序列的-35区序列的galP1衍生物,RNA聚合酶可保护碱基至-45,而-35区则受到完全保护。综上所述,我们的数据表明,RNA聚合酶-启动子复合物的总体结构可以根据是否存在共有-35区序列而有所不同;具体取决于是否存在共有-35区序列。在没有这些序列的情况下,开放复合物的形成需要启动子DNA的变形。但是,启动子DNA在转录开始附近的解链不受-35区序列性质的影响。间隔区中的galP1衍生物携带点突变会大大降低启动子活性,因此-10序列和转录起始位点附近的RNA聚合酶对碱基的保护作用降低。相反,尽管-46至-54的序列对高锰酸钾的攻击变得高度敏感,表明该区域的严重变形或扭结,但间隔区突变不会影响-25上游的保护。我们建议,使用此galP1衍生物,RNA聚合酶在复合物中被阻断,该复合物是打开复合物形成途径的中间产物。

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