首页> 外文期刊>Nucleic Acids Research >SITE-SPECIFIC AND PHOTO-INDUCED ALKYLATION OF DNA BY A DIMETHYLANTHRAQUINONE-OLIGODEOXYNUCLEOTIDE CONJUGATE
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SITE-SPECIFIC AND PHOTO-INDUCED ALKYLATION OF DNA BY A DIMETHYLANTHRAQUINONE-OLIGODEOXYNUCLEOTIDE CONJUGATE

机译:二甲基蒽醌-寡聚脱氧核糖核酸共轭物的位点特异性和光诱导的DNA烷基化

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摘要

A dialkyl-substituted anthraquinone derivative was synthesized and ligated to a sequence-directing oligodeoxynucleotide to examine its efficiency and specificity for cross-linking to complementary sequences of DNA. The anthraquinone appendage stabilized spontaneous hybridization of the target and probe sequences through non-covalent interactions, as indicated by thermal denaturation studies. Covalent modification of the target was induced by exposure to near UV light (lambda > 335 nm) to generate cross-linked duplexes in yields as great as 45%. Reaction was dependent on the first unpaired nucleotide extended beyond the duplex formed by association of the target and probe. A specificity of C > T > A approximate to G was determined for modification at this position. The overall site and nucleotide selectivity seems to originate from the chemical requirements of cross-linking and does not likely reflect the dominant solution structure of the complex prior to irradiation.
机译:合成了二烷基取代的蒽醌衍生物,并将其连接至序列指导的寡脱氧核苷酸,以检查其与DNA互补序列交联的效率和特异性。如热变性研究所示,蒽醌附肢通过非共价相互作用稳定了靶标和探针序列的自发杂交。通过暴露于近紫外光(λ> 335 nm)诱导靶标的共价修饰,以产生高达45%的产率的交联双链体。反应取决于第一个未配对的核苷酸,该核苷酸延伸超出了靶标和探针缔合形成的双链体。确定C> T> A的特异性,以在该位置进行修饰。总体位点和核苷酸选择性似乎源于交联的化学要求,并且不可能反映辐射前复合物的主要溶液结构。

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