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Dimeric and trimeric derivatives of the azinomycin B chromophore show enhanced DNA binding

机译:阿奇霉素B发色团的二聚体和三聚体衍生物显示出增强的DNA结合

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摘要

To explore the utility of the azinomycin B chromophore as a platform for the development of major-groove binding small molecules, we have prepared a series of 3-methoxy-5-methylnaphthalene derivatives containing diamine, triamine, and carbohydrate linker moieties. All bis- and tris-azinomycin derivatives are intercalators that display submicromolar binding affinities for calf-thymus DNA, as revealed by viscometry measurements and fluorescent intercalator displacement (FID) assays, respectively. Although the tightest binding ligand 1d (Ka=2.42 × 107 M-1) has similar affinities for sequence diverse polynucleotides, competition binding studies with methylated phage DNA and known major and minor groove binding small molecules suggest that the tether moiety linking the naphthalene chromophores may occupy the major groove of DNA.
机译:为了探索阿奇霉素B发色团作为开发主要-沟结合小分子的平台的实用性,我们制备了一系列含有二胺,三胺和碳水化合物连接基的3-甲氧基-5-甲基萘衍生物。所有的双-和三-阿奇霉素衍生物都是嵌入剂,它们分别对小牛胸腺DNA表现出亚微摩尔的结合亲和力,这分别通过粘度测量和荧光嵌入剂置换(FID)分析得以揭示。尽管最紧密的结合配体1d(Ka = 2.42×10 7 M -1 )对不同序列的多核苷酸具有相似的亲和力,但是使用甲基化噬菌体DNA以及已知的主要和小沟结合小分子表明连接萘发色团的系链部分可能占据了DNA的主要沟。

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