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首页> 外文期刊>Journal of Molecular Biology >LONG-RANGE EFFECTS IN A SUPERCOILED DNA DOMAIN GENERATED BY TRANSCRIPTION IN VITRO
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LONG-RANGE EFFECTS IN A SUPERCOILED DNA DOMAIN GENERATED BY TRANSCRIPTION IN VITRO

机译:体外转录产生的超螺旋DNA域的长距离效应

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The translocation of a transcription complex can transiently introduce positive and negative superhelical windings into the template DNA. To gain further insight into this dynamic DNA supercoiling mechanism and its possible involvement in biological processes, we employed an in vitro system in which site-specific recombination by gamma delta resolvase is topologically coupled to transcription-induced negative supercoiling. Our kinetic experiments suggest that recombination is closely linked to the process of supercoiling by transcription. We utilized the known high speed at which two resolvase-bound recombination sites can pair to form a synaptic complex in kinetic experiments with DNA substrates containing three recombination sites. Our data provide evidence for the existence of a transient gradient of negative supercoiling. Such a gradient seems to be predominantly a consequence of DNA double helix rotation behind a translocating RNA polymerase and originates within a broad region up to two kilobase-pairs upstream of the transcriptional start site. We further demonstrate that the topological coupling between transcription and recombination is not affected when the DNA-bending protein integration host factor from E. coli is bound to multiple sites within the phage lambda attachment region. We discuss implications of our ii I vitro findings with respect to possible in vivo functions of the dynamic nature of transcription-induced supercoiling. (C) 1997 Academic Press Limited. [References: 46]
机译:转录复合物的易位可将正和负超螺旋绕组瞬时引入模板DNA。为了进一步了解这种动态DNA超螺旋机制及其可能参与的生物学过程,我们采用了一种体外系统,其中γ-δ分辨酶的位点特异性重组在拓扑上与转录诱导的负超螺旋结合。我们的动力学实验表明重组与转录超螺旋过程紧密相关。在动力学实验中,我们利用含有三个重组位点的DNA底物,利用已知的高速结合两个溶解酶结合的重组位点来形成突触复合物。我们的数据提供了负超螺旋瞬态梯度存在的证据。这种梯度似乎主要是由于DNA双螺旋旋转在转位RNA聚合酶后面引起的,并且起源于转录起始位点上游最多两千个碱基对的广阔区域。我们进一步证明,当来自大肠杆菌的DNA弯曲蛋白整合宿主因子与噬菌体λ附着区域内的多个位点结合时,转录和重组之间的拓扑耦合不会受到影响。我们讨论了关于转录诱导的超螺旋的动态性质的可能的体内功能方面的研究结果。 (C)1997 Academic Press Limited。 [参考:46]

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