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Tertiary base pair interactions in slipped loop-DNA: an NMR and model building study.

机译:滑动环DNA中的第三碱基对相互作用:NMR和模型构建研究。

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摘要

Short direct repeat sequences are often found in regulatory regions of various genes; in some cases they display hypersensitivity to S1 nuclease cleavage in supercoiled plasmids. A non-standard DNA structure (Slipped Loop Structure, or SLS) has been proposed for these regions in order to explain the S1 cleavage data; the formation of this structure may be involved in the regulation of transcription. The structure can be generally classified as a particular type of pseudoknot. To date, no detailed stereochemical model has been developed. We have applied one-dimensional 1H NMR spectroscopy to study a synthetic DNA, 55 nucleotides in length, which cannot fold as a standard hairpin but which may favor the SLS formation. AT base pairs were identified, consistent only with the formation of an additional, tertiary miniduplex in the SLS. An all-atom stereochemically sound model has been developed for the SLS with the use of conformational calculations. The model building studies have demonstrated that the tertiary miniduplex can be formed for one of the plausible SLS isomers, but not for the other.
机译:短的直接重复序列通常在各种基因的调控区中发现;在某些情况下,它们对超螺旋质粒中的S1核酸酶切割表现出超敏性。为了解释S1裂解数据,已经提出了针对这些区域的非标准DNA结构(Slipped Loop Structure,或SLS)。该结构的形成可能参与转录的调节。通常可以将该结构分类为伪结的特定类型。迄今为止,尚未开发出详细的立体化学模型。我们已经使用一维1H NMR光谱研究了一个合成的DNA,其长度为55个核苷酸,不能作为标准的发夹折叠,但可能有利于SLS的形成。确定了AT碱基对,仅与SLS中另外的三级微型双链体的形成一致。利用构象计算为SLS开发了全原子立体化学声音模型。建立模型的研究表明,可以为一种可能的SLS异构体形成三级微型双链体,而为另一种异构体则不能。

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