首页> 美国卫生研究院文献>Nucleic Acids Research >The sequence specificity of alkylation for a series of benzoic acid mustard and imidazole-containing distamycin analogues: the importance of local sequence conformation.
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The sequence specificity of alkylation for a series of benzoic acid mustard and imidazole-containing distamycin analogues: the importance of local sequence conformation.

机译:一系列苯甲酸芥末和含咪唑的双霉素类似物烷基化的序列特异性:局部序列构象的重要性。

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摘要

The covalent sequence specificity of a series of nitrogen mustard and imidazole-containing analogues of distamycin was determined using modified sequencing techniques. The analogues tether benzoic acid mustard (BAM) and possess either one, two or three imidazole units. Examination of the alkylation specificity revealed that BAM produced guanine-N7 lesions in a pattern similar to conventional nitrogen mustards. The monoimidazole-BAM conjugate also produced guanine-N7 alkylation in a similar pattern to BAM, but at a 100-fold lower dose. The diimidazole and triimidazole conjugates did not produce detectable guanine-N7 alkylation but only alkylated at selected sites in the minor groove. Unexpectedly, the alkylation specificity at equivalent doses was nearly identical to that found for the previously reported pyrrole-BAM conjugates. The consensus sequence, 5'-TTTTGPuwas strongly alkylated by the triimidazole conjugate in preference to other similar sites including three occurrences of 5'-TTTTAA. Footprinting studies were carried out to examine the non-covalent DNA binding interactions. These studies revealed that the tripyrrole- BAM conjugate bound non-covalently to the same AT-rich sites as distamycin. In contrast, whereas the Im3lexitropsin bound non-covalently to GC-rich sequences, the triimidazole-BAM conjugate did not detectably footprint to either GC- or AT-rich regions at equivalent doses. The results indicate that the alkylation event is not solely dictated by the non-covalent binding and might be influenced by a unique sequence dependent conformational feature of the consensus sequence 5'-TTTTGPu.
机译:使用改良的测序技术确定了一系列氮芥和二咪唑含咪唑类似物的共价序列特异性。类似物束缚苯甲酸芥子气(BAM),并具有一个,两个或三个咪唑单元。对烷基化特异性的检查表明,BAM产生的鸟嘌呤-N7损伤与常规氮芥相似。单咪唑-BAM共轭物也以类似于BAM的方式产生鸟嘌呤-N7烷基化,但剂量低100倍。二咪唑和三咪唑共轭物不会产生可检测到的鸟嘌呤-N7烷基化,而只会在小沟中的选定位置发生烷基化。出乎意料的是,等效剂量下的烷基化特异性几乎与先前报道的吡咯-BAM偶联物相同。共有序列5'-TTTTGPu被三咪唑共轭物强烈烷基化,优先于其他相似的位点,包括3次出现的5'-TTTTAA。进行了足迹研究,以检查非共价DNA结合相互作用。这些研究表明,三吡咯-BAM缀合物非共价结合于与双嘧霉素相同的富含AT的位点。相反,尽管Im3lexitropsin与富GC序列非共价结合,但三咪唑-BAM偶联物在等剂量下未检测到富GC或AT区域的足迹。结果表明烷基化事件不仅由非共价结合决定,而且可能受共有序列5'-TTTTGPu的独特序列依赖性构象特征影响。

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