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Differential Targeting of Unpaired Bases within Duplex DNA by the Natural Compound Clerocidin: A Valuable Tool to Dissect DNA Secondary Structure

机译:天然化合物Clerocidin在双链DNA中不成对碱基的差异靶向:解剖DNA二级结构的重要工具

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摘要

Non-canonical DNA structures have been postulated to mediate protein-nucleic acid interactions and to function as intermediates in the generation of frame-shift mutations when errors in DNA replication occur, which result in a variety of diseases and cancers. Compounds capable of binding to non-canonical DNA conformations may thus have significant diagnostic and therapeutic potential. Clerocidin is a natural diterpenoid which has been shown to selectively react with single-stranded bases without targeting the double helix. Here we performed a comprehensive analysis on several non-canonical DNA secondary structures, namely mismatches, nicks, bulges, hairpins, with sequence variations in both the single-stranded region and the double-stranded flanking segment. By analysis of clerocidin reactivity, we were able to identify the exposed reactive residues which provided information on both the secondary structure and the accessibility of the non-paired sites. Mismatches longer than 1 base were necessary to be reached by clerocidin reactive groups, while 1-base nicks were promptly targeted by clerocidin; in hairpins, clerocidin reactivity increased with the length of the hairpin loop, while, interestingly, reactivity towards bulges reached a maximum in 3-base-long bulges and declined in longer bulges. Electrophoretic mobility shift analysis demonstrated that bulges longer than 3 bases (i.e. 5- and 7-bases) folded or stacked on the duplex region therefore being less accessible by the compound. Clerocidin thus represents a new valuable diagnostic tool to dissect DNA secondary structures.
机译:假设非经典的DNA结构会介导蛋白质-核酸相互作用,并在DNA复制发生错误时充当移码突变产生的中间体,从而导致多种疾病和癌症。因此,能够结合非规范DNA构象的化合物可能具有显着的诊断和治疗潜力。 Clerocidin是一种天然的二萜类化合物,已显示可与单链碱基选择性反应而不会靶向双螺旋。在这里,我们对几种非规范的DNA二级结构(即错配,缺口,凸起,发夹)进行了全面分析,单链区域和双链侧翼部分均具有序列变异。通过分析clerocidin的反应性,我们能够鉴定出暴露的反应性残基,该残基提供了有关二级结构和非配对位点可及性的信息。 clerocidin反应性基团必须要达到1个碱基以上的错配,而clerocidin可以迅速靶向1个碱基的缺口。在发夹中,芹菜抑素的反应性随发夹环的长度而增加,而有趣的是,对凸起的反应性在3个碱基长的凸起中达到最大值,而在较长的凸起中则下降。电泳迁移率变动分析表明,突出部分长于在双链体区域折叠或堆叠的3个碱基(即5个和7个碱基),因此该化合物较难接近。因此,Clerocidin代表了一种解剖DNA二级结构的新的有价值的诊断工具。

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