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超螺旋对于在分歧的malEp和malKp启动子处起始复合物的形成和稳定性至关重要。

Supercoiling is essential for the formation and stability of the initiation complex at the divergent malEp and malKp promoters.

作者信息

Richet E, Raibaud O

机构信息

Unité de Génétique Moléculaire, URA 1149 du CNRS, Institut Pasteur, Paris, France.

出版信息

J Mol Biol. 1991 Apr 5;218(3):529-42. doi: 10.1016/0022-2836(91)90699-7.

Abstract

malEp and malKp are divergent and partially overlapping promoters of the Escherichia coli maltose regulon, whose activity depends on the presence of two transcriptional activators. MalT and CRP (cAMP receptor protein). Their activation involves a common 210 base-pair regulatory region encompassing multiple binding sites for both activators. Using a supercoiled plasmid containing malEp and malKp as template, purified proteins and a single-round transcription assay, we developed an in vitro system in which both promoters behave as in vivo. In this system, malEp and malKp are active only in the presence of both MalT and CRP, and various mutations in the MalT or CRP binding sites affect the promoters in the same way as they do in vivo. We showed that supercoiling plays a crucial role not only for the formation of the initiation complex at malEp and malKp but also for its stability. In addition, dimethylsulphate protection experiments provide evidence that the nucleoprotein complexes formed by CRP and MalT bound to malEp and malKp on supercoiled and relaxed DNA are different. We speculate that one of the roles of supercoiling might be to assist the assembly of a preinitiation complex involving the regulatory region DNA and several molecules of MalT and CRP.

摘要

malEp和malKp是大肠杆菌麦芽糖操纵子的两个方向相反且部分重叠的启动子,其活性取决于两种转录激活因子的存在,即MalT和CRP(环磷酸腺苷受体蛋白)。它们的激活涉及一个常见的210个碱基对的调控区域,该区域包含两种激活因子的多个结合位点。我们以含有malEp和malKp的超螺旋质粒为模板、纯化的蛋白质以及单轮转录分析方法,构建了一个体外系统,其中两个启动子的行为与体内情况一致。在这个系统中,malEp和malKp仅在同时存在MalT和CRP时才具有活性,并且MalT或CRP结合位点的各种突变对启动子的影响与它们在体内的影响方式相同。我们发现,超螺旋不仅对malEp和malKp起始复合物的形成至关重要,而且对其稳定性也至关重要。此外,硫酸二甲酯保护实验提供了证据,表明CRP和MalT与超螺旋和松弛DNA上的malEp和malKp结合形成的核蛋白复合物是不同的。我们推测,超螺旋的作用之一可能是协助涉及调控区域DNA以及多个MalT和CRP分子的起始前复合物的组装。

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