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具有延伸 -10 基序的 lacP1 启动子。环磷酸腺苷蛋白在转录起始不同步骤中的多效性作用。

lacP1 promoter with an extended -10 motif. Pleiotropic effects of cyclic AMP protein at different steps of transcription initiation.

作者信息

Liu Mofang, Garges Susan, Adhya Sankar

机构信息

Laboratory of Molecular Biology, Center for Cancer Research, NCI, National Institutes of Health, Bethesda, Maryland 20892-4264, USA.

出版信息

J Biol Chem. 2004 Dec 24;279(52):54552-7. doi: 10.1074/jbc.M408609200. Epub 2004 Sep 22.

Abstract

The cyclic AMP receptor protein (CRP), which activates transcription from the wild-type lacP1 promoter and most of its mutants, represses productive RNA synthesis from a lacP1 promoter variant that contains an extended -10 element, although CRP enhances RNA polymerase binding as well as open complex formation in both promoters. Moreover, abortive RNA synthesis, which is already higher in the extended -10 variant compared with the parent promoter, was further enhanced by CRP. These results, together with the observed decrease in productive RNA synthesis, indicate that CRP, while facilitating the earlier steps of initiation, inhibits transcription from the extended -10 lacP1 by hindering promoter clearance. We propose that CRP decreases energetic barriers to RNA polymerase binding, isomerization, and abortive RNA synthesis but stabilizes the abortive RNA initiating complex, which results in increasing the activation energy of the transition state before the elongation complex. The results demonstrate for the first time that a DNA-binding regulatory protein acts as an activator or a repressor in different steps of the transcription initiation pathway because of the energetic differences of the intermediate complex in the same promoter.

摘要

环腺苷酸受体蛋白(CRP)可激活野生型lacP1启动子及其大多数突变体的转录,但会抑制含有延伸-10元件的lacP1启动子变体的有效RNA合成,尽管CRP在这两种启动子中均能增强RNA聚合酶的结合以及开放复合物的形成。此外,与亲本启动子相比,延伸-10变体中本就较高的流产性RNA合成被CRP进一步增强。这些结果,连同观察到的有效RNA合成减少,表明CRP在促进起始早期步骤的同时,通过阻碍启动子清除来抑制延伸-10 lacP1的转录。我们提出,CRP降低了RNA聚合酶结合、异构化和流产性RNA合成的能量障碍,但稳定了流产性RNA起始复合物,这导致增加了延伸复合物形成前过渡态的活化能。这些结果首次证明,由于同一启动子中中间复合物的能量差异,一种DNA结合调节蛋白在转录起始途径的不同步骤中可作为激活剂或抑制剂发挥作用。

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