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利用紫外激光足迹法研究大肠杆菌malT启动子转录激活的结构动力学

Structural kinetics of transcription activation at the malT promoter of Escherichia coli by UV laser footprinting.

作者信息

Eichenberger P, Déthiollaz S, Buc H, Geiselmann J

机构信息

Département de Biologie Moléculaire, Université de Genève, 30 Quai Ernest-Ansermet, CH-1211 Genève 4, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 1997 Aug 19;94(17):9022-7. doi: 10.1073/pnas.94.17.9022.

Abstract

We have studied the kinetics of transcriptional initiation and activation at the malT and malTp1 promoters of Escherichia coli using UV laser footprinting. Contrary to previous studies and because of the very rapid signal acquisition by this technique, we can obtain structural information about true reaction intermediates of transcription initiation. The consequences of adding a transcriptional activator, the cAMP receptor protein/cAMP complex (CRP), are monitored in real time, permitting us to assign specific interactions to the activation of discrete steps in transcription initiation. Direct protein-protein contacts between CRP and the RNA polymerase appeared very rapidly, followed by DNA melting around the -10 hexamer. CRP slightly increased the rate of this isomerization reaction but, more importantly, favored the establishment of additional contacts between the DNA upstream of the CRP binding site and RNA polymerase subsequent to open complex formation. These contacts make a major contribution to transcriptional activation by stabilizing open forms of the promoter complex, thereby indirectly accelerating promoter escape. The ensemble of the kinetic, structural signals demonstrated directly that CRP exerts most of its activating effects on the late stages of transcriptional initiation at the malT promoter.

摘要

我们利用紫外激光足迹法研究了大肠杆菌malT和malTp1启动子处转录起始和激活的动力学。与之前的研究不同,由于该技术能够非常快速地获取信号,我们可以获得关于转录起始真正反应中间体的结构信息。添加转录激活因子——环磷酸腺苷受体蛋白/环磷酸腺苷复合物(CRP)的结果会被实时监测,这使我们能够确定转录起始离散步骤激活过程中的特定相互作用。CRP与RNA聚合酶之间的直接蛋白质-蛋白质接触很快就出现了,随后在 -10 六聚体周围发生DNA解链。CRP略微提高了这种异构化反应的速率,但更重要的是,在开放复合物形成后,它有利于CRP结合位点上游的DNA与RNA聚合酶之间建立额外的接触。这些接触通过稳定启动子复合物的开放形式对转录激活起主要作用,从而间接加速启动子逃逸。动力学和结构信号的整体情况直接表明,CRP在malT启动子转录起始的后期发挥了大部分激活作用。

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