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STEREOCHEMICAL BASIS OF DNA BENDING BY TRANSCRIPTION FACTORS [Review]

机译:转录因子对DNA弯曲的立体化学基础[综述]

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Superstructure-formation of DNA plays an important role in transcription regulation as well as in chromatin formation. To understand the stereochemical basis of DNA bending by proteins we analysed the structural characteristics of dinucleotide steps which occur at the site where DNA is bent upon binding a transcription factor. When DNA is considerably bent in a crystal structure the bending is not spread smoothly over a length, but the DNA is kinked at a pair of crucial steps which are highly rolled and untwisted. These rolled steps are spaced 6-10 bp apart and are predominantly occupied by pyrimidine-purine sequences. In association with another dinucleotide step at the centre, which combines 6 bp-spaced rolled steps towards the same side of the DNA, these produce two essentially different types of DNA bending.
机译:DNA的超结构形成在转录调控以及染色质形成中起着重要作用。为了解蛋白质弯曲DNA的立体化学基础,我们分析了在结合转录因子使DNA弯曲的位点发生的二核苷酸步骤的结构特征。当DNA在晶体结构中大量弯曲时,弯曲不会在一段长度上平稳地扩展,但是DNA在一对关键步骤扭结,这些关键步骤被高度滚动和不扭曲。这些滚动步骤间隔6-10 bp,主要被嘧啶-嘌呤序列占据。与中心的另一个二核苷酸步骤(将6个bp间隔的滚动步骤朝向DNA的同一侧结合)结合在一起,它们会产生两种基本不同类型的DNA弯曲。

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