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大肠杆菌melAB启动子的转录激活:MelR和环腺苷酸受体蛋白的作用

Transcription activation at the Escherichia coli melAB promoter: the role of MelR and the cyclic AMP receptor protein.

作者信息

Belyaeva T A, Wade J T, Webster C L, Howard V J, Thomas M S, Hyde E I, Busby S J

机构信息

School of Biosciences, The University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.

出版信息

Mol Microbiol. 2000 Apr;36(1):211-22. doi: 10.1046/j.1365-2958.2000.01849.x.

Abstract

MelR is a melibiose-triggered transcription activator that belongs to the AraC family of transcription factors. Using purified Escherichia coli RNA polymerase and a cloned DNA fragment carrying the entire melibiose operon intergenic region, we have demonstrated in vitro open complex formation and activation of transcription initiation at the melAB promoter. This activation is dependent on MelR and melibiose. These studies also show that the cyclic AMP receptor protein (CRP) interacts with the melAB promoter and increases MelR-dependent transcription activation. DNAase I footprinting has been exploited to investigate the location of MelR-and CRP-binding sites at the melAB promoter. We showed previously that MelR binds to two identical 18 bp target sequences centred at position -100.5 (Site 1) and position -62.5 (Site 2). In this work, we show that MelR additionally binds to two other related 18 bp sequences: Site 1', centred at position -120.5, located immediately upstream of Site 1, and Site R, at position -238.5, which overlaps the transcription start site of the divergent melR promoter. MelR can bind to Site 1', Site 1, Site 2 and Site R, in both the absence and the presence of melibiose. However, in the presence of melibiose, MelR also binds to a fifth site (Site 2', centred at position -42.5) located immediately downstream of Site 2, and overlapping the -35 region of the melAB promoter. Additionally, although CRP is unable to bind to the melAB promoter in the absence of MelR, in the presence of MelR, it binds to a site located between MelR binding Site 1 and Site 2. Thus, tandem-bound MelR recruits CRP to the MelR. We propose that expression from the melAB promoter has an absolute requirement for MelR binding to Site 2'. Optimal expression of the melAB promoter requires Sites 1', Site 1, Site 2 and Site 2'; CRP acts as a 'bridge' between MelR bound at Sites 1' and 1 and at Sites 2 and 2', increasing expression from the melAB promoter. In support of this model, we show that improvement of the base sequence of Site 2' removes the requirement for Site 1' and Site 1, and short circuits the effects of CRP.

摘要

MelR是一种由蜜二糖触发的转录激活因子,属于AraC转录因子家族。利用纯化的大肠杆菌RNA聚合酶和携带整个蜜二糖操纵子基因间区域的克隆DNA片段,我们在体外证实了在melAB启动子处开放复合物的形成以及转录起始的激活。这种激活依赖于MelR和蜜二糖。这些研究还表明,环磷酸腺苷受体蛋白(CRP)与melAB启动子相互作用,并增强MelR依赖的转录激活。利用DNA酶I足迹法研究了MelR和CRP结合位点在melAB启动子上的位置。我们之前表明,MelR结合到两个相同的18 bp靶序列上,其中心分别位于-100.5位置(位点1)和-62.5位置(位点2)。在这项工作中,我们表明MelR还额外结合到另外两个相关的18 bp序列上:位点1',中心位于-120.5位置,位于位点1的紧上游;位点R,位于-238.5位置,与反向melR启动子的转录起始位点重叠。在有无蜜二糖的情况下,MelR都能结合到位点1'、位点1、位点2和位点R。然而,在有蜜二糖存在时,MelR还结合到位于位点2紧下游且与melAB启动子的-35区域重叠的第五个位点(位点2',中心位于-42.5位置)。此外,虽然在没有MelR时CRP无法结合到melAB启动子上,但在有MelR存在时,它结合到位于MelR结合位点1和位点2之间的一个位点。因此,串联结合的MelR将CRP招募到MelR上。我们提出,melAB启动子的表达绝对需要MelR结合到位点2'。melAB启动子的最佳表达需要位点1'、位点1、位点2和位点2';CRP作为在位点1'和1以及位点2和2'结合的MelR之间的“桥梁”,增加melAB启动子的表达。为支持该模型,我们表明改善位点2'的碱基序列消除了对位点1'和位点1的需求,并绕过了CRP的作用。

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