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σ⁵⁴(σᴺ)全酶封闭启动子复合物内的DNA扭曲及局部DNA解旋的成核作用。

DNA distortion and nucleation of local DNA unwinding within sigma-54 (sigma N) holoenzyme closed promoter complexes.

作者信息

Morris L, Cannon W, Claverie-Martin F, Austin S, Buck M

机构信息

Agricultural and Food Research Council, University of Sussex, Brighton, United Kingdom.

出版信息

J Biol Chem. 1994 Apr 15;269(15):11563-71.

PMID:8157688
Abstract

The sigma N (sigma 54) RNA polymerase holoenzyme has the distinctive property of binding to promoters to form a closed promoter complex, which only isomerizes to the open complex when acted upon by an enhancer binding activator protein. We probed promoter complexes that form between sigma N and its holoenzyme with the conformationally sensitive footprinting reagents ortho-copper phenanthroline, potassium permanganate, and diethylpyrocarbonate. Results from these experiments indicate that the contacts sigma N makes at the -12 promoter element are necessary to promote a local DNA distortion immediately adjacent to this promoter element when the holoenzyme but not sigma N alone binds promoter DNA. Complexes in which this local distortion is not detected are not activatable, and the altered DNA conformation is diminished in the activated complex. We propose that a barrier to open complex formation in the sigma N holoenzyme closed complex is at some step or steps after the initial nucleation of DNA strand separation, which is detected as an altered DNA conformation stably maintained within the closed complex. Thus the activator protein may promote a conformational change in the sigma N holoenzyme to allow propagation of the altered DNA conformation, probably local unwinding, which we propose is necessary for formation of the melted DNA state, characteristic of the open promoter complex.

摘要

σN(σ54)RNA聚合酶全酶具有独特的性质,即它能与启动子结合形成封闭的启动子复合物,该复合物只有在受到增强子结合激活蛋白作用时才异构化为开放复合物。我们用构象敏感的足迹试剂邻菲罗啉铜、高锰酸钾和焦碳酸二乙酯探测了σN与其全酶之间形成的启动子复合物。这些实验结果表明,当全酶而非单独的σN结合启动子DNA时,σN在-12启动子元件处的接触对于促进紧邻该启动子元件的局部DNA扭曲是必要的。未检测到这种局部扭曲的复合物是不可激活的,并且在激活的复合物中改变的DNA构象会减弱。我们提出,σN全酶封闭复合物中开放复合物形成的障碍存在于DNA链分离初始成核后的某些步骤中,这被检测为在封闭复合物中稳定维持的改变的DNA构象。因此,激活蛋白可能促进σN全酶的构象变化,以允许改变的DNA构象传播,可能是局部解旋,我们认为这对于形成开放启动子复合物特有的解链DNA状态是必要的。

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