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DNA microstructure influences selective binding of small molecules designed to target mixed-site DNA sequences

机译:DNA微观结构影响旨在靶向靶向混合位点DNA序列的小分子的选择性结合

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摘要

Specific targeting of protein-nucleic acid interactions is an area of current interest, for example, in the regulation of gene-expression. Most transcription factor proteins bind in the DNA major groove; however, we are interested in an approach using smallmolecules to target the minor groove to control expression by an allosteric mechanism. In an effort to broaden sequence recognition of DNA-targetedsmall- molecules to include both A.T and G.C base pairs, we recently discovered that the heterocyclic diamidine, DB2277, forms a strong monomer complex with a DNA sequence containing 5'-AAAGTTT3'. Competition mass spectrometry and surface plasmon resonance identified new monomer complexes, as well as unexpected binding of two DB2277 with certain sequences. Inherent microstructural differences within the experimental DNAs were identified through computational analyses to understand the molecular basis for recognition. These findings emphasize the critical nature of the DNA minor groove microstructure for sequence-specific recognition and offer new avenues to design synthetic small molecules for effective regulation of geneexpression.
机译:的蛋白质 - 核酸相互作用特异性靶向是当前感兴趣的区域,例如,在基因表达的调节。在DNA大沟结合最转录因子蛋白;然而,我们感兴趣的是使用由smallmolecules变构机制为目标的小沟,以控制表达的方法。在努力DNA-targetedsmall-分子的扩大序列识别为包括A.T和G.C碱基对,我们最近发现,杂环二脒,DB2277,形成牢固的单体复合物与含有5'-AAAGTTT3' 的DNA序列。竞争质谱法和表面等离子共振确定的新单体复合物,以及意外2个DB2277与某些序列的结合。实验的DNA中固有的显微结构差异,通过计算分析鉴定,以了解识别的分子基础。这些发现强调DNA小沟微观结构序列特异性识别的关键性质,并提供新的途径来设计geneexpression有效调节合成的小分子。

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  • 来源
    《Nucleic Acids Research》 |2017年第3期|共10页
  • 作者单位

    Georgia State Univ Dept Chem Ctr Diagnost &

    Therapeut Atlanta GA 30303 USA;

    Georgia State Univ Dept Chem Ctr Diagnost &

    Therapeut Atlanta GA 30303 USA;

    Georgia State Univ Dept Chem Ctr Diagnost &

    Therapeut Atlanta GA 30303 USA;

    Georgia State Univ Dept Chem Ctr Diagnost &

    Therapeut Atlanta GA 30303 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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