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首页> 外文期刊>Chemistry: A European journal >Selective Alkylation of C-Rich Bulge Motifs in Nucleic Acids by Quinone Methide Derivatives
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Selective Alkylation of C-Rich Bulge Motifs in Nucleic Acids by Quinone Methide Derivatives

机译:醌甲基甲烷衍生物选择性地烷基化核酸中富含C的凸起基序

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摘要

A quinone methide precursor featuring a bis-cyclen anchoring moiety has been synthesized and its capacity to alkylate oligonucleotide targets quantified in the presence and absence of divalent metal ions (Zn2+, Ni2+ and Cd2+). The oligonucleotides were designed for testing the sequence and secondary structure specificity of the reaction. Gel electrophoretic analysis revealed predominant alkylation of C-rich bulges, regardless of the presence of divalent metal ions or even the bis-cyclen anchor. This C-selectivity appears to be an intrinsic property of the quinone methide electrophile as reflected by its reaction with an equimolar mixture of the 2-deoxynucleosides. Only dA-N1 and dC-N3 alkylation products were detected initially and only the dC adduct persisted for detection under conditions of the gel electrophoretic analysis.
机译:已经合成了具有双环锚定部分的甲基苯醌前体,并在存在和不存在二价金属离子(Zn2 +,Ni2 +和Cd2 +)的情况下,量化了其使寡核苷酸靶烷基化的能力。设计寡核苷酸以测试反应的序列和二级结构特异性。凝胶电泳分析显示富C凸起的主要烷基化,而不管是否存在二价金属离子或什至双环锚。如其与2-脱氧核苷的等摩尔混合物的反应所反映,该C-选择性似乎是醌甲基化亲电子体的固有性质。最初仅检测到dA-N1和dC-N3烷基化产物,只有dC加合物在凝胶电泳分析条件下仍可检测。

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