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绘制大肠杆菌RNA聚合酶-lacUV5开放启动子复合物中与σ70保守区域近端的启动子DNA位点图谱。

Mapping the promoter DNA sites proximal to conserved regions of sigma 70 in an Escherichia coli RNA polymerase-lacUV5 open promoter complex.

作者信息

Owens J T, Chmura A J, Murakami K, Fujita N, Ishihama A, Meares C F

机构信息

Department of Chemistry, University of California, Davis 95616, USA.

出版信息

Biochemistry. 1998 May 26;37(21):7670-5. doi: 10.1021/bi980188n.

Abstract

Base-specific interactions between promoter DNA and Escherichia coli RNA polymerase are regulated by a sigma (sigma) protein during transcription initiation. To map spatial relations between evolutionarily conserved regions of the primary sigma (sigma 70) and each DNA strand along the lacUV5 promoter in the transcriptionally active "open" complex, we have used a cysteine-tethered cutting reagent to cleave DNA strands. The chemical nuclease FeBABE [iron (S)-1-(p-bromoacetamidobenzyl)ethylenediaminetetraacetate] was conjugated to single-cysteine mutants of sigma 70 at sites 132C, 376C, 396C, 422C, 496C, 517C, or 581C. After formation of open promoter complexes between lacUV5 DNA and RNA polymerase holoenzymes carrying conjugated sigma 70 subunits, we observed promoter DNA cleavage spanning at least 60 bases, between positions -48 and +12. The results show that sigma 70 region 2.1, otherwise implicated in core enzyme binding, is proximal to the nontemplate strand of lacUV5 DNA between the -10 promoter element and positions as far downstream of the transcription start site as +12. Conserved region 3.2 of sigma 70 is proximal to the template strand near the +1 transcription start site, and region 3.1 is positioned between the lacUV5-10 and -35 promoter elements. We propose a model for the orientation of sigma 70 and DNA in the open complex.

摘要

在转录起始过程中,启动子DNA与大肠杆菌RNA聚合酶之间的碱基特异性相互作用受σ蛋白调控。为了绘制转录活性“开放”复合物中主要σ因子(σ70)的进化保守区域与沿lacUV5启动子的每条DNA链之间的空间关系,我们使用了一种半胱氨酸连接的切割试剂来切割DNA链。化学核酸酶FeBABE [铁(S)-1-(对溴乙酰氨基苄基)乙二胺四乙酸]与σ70的单半胱氨酸突变体在132C、376C、396C、422C、496C、517C或581C位点进行偶联。在lacUV5 DNA与携带偶联σ70亚基的RNA聚合酶全酶之间形成开放启动子复合物后,我们观察到启动子DNA切割跨越至少60个碱基,位于-48和+12位之间。结果表明,否则与核心酶结合有关的σ70区域2.1,在-10启动子元件与转录起始位点下游直至+12位之间靠近lacUV5 DNA的非模板链。σ70的保守区域3.2在+1转录起始位点附近靠近模板链,区域3.1位于lacUV5 -10和-35启动子元件之间。我们提出了一个开放复合物中σ70和DNA取向的模型。

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