To achieve a sequence-specific DNA cleavage by topoisomerase I, derivatives of the antitumor drug camptothecin have been covalently linked to triple helix-forming oligonucleotides that bind in a sequence-specific manner to the major groove of double-helical DNA. Triplex formation at the target sequence positions the drug selectively at the triplex site, thereby stimulating topoisomerase I-mediated DNA cleavage at this site. In a continuous effort to optimize this strategy, a broad set of conjugates consisting of (i) 16-20-base-long oligonucleotides, (ii) alkyl linkers of variable length, and (iii) camptothecin derivatives substituted on the A or B quinoline ring were designed and synthesized. Analysis of the cleavage sites at nucleotide resolution reveals that the specificity and efficacy of cleavage depends markedly on the length of both the triple-helical structure and the linker between the oligonucleotide and the poison. The optimized hybrid molecules induced strong and highly specific cleavage at a site adjacent to the triplex. Furthermore, the drug-stabilized DNA-topoisomerase I cleavage complexes were shown to be more resistant to salt-induced reversal than the complexes induced by camptothecin alone. Such rationally designed camptothecin conjugates could provide useful antitumor drugs directed selectively against genes bearing the targeted triplex binding site. In addition, they represent a powerful tool to probe the molecular interactions in the DNA-topoisomerase I complex.

译文

为了实现拓扑异构酶I的序列特异性DNA切割,抗肿瘤药物喜树碱的衍生物已与三螺旋形成寡核苷酸共价连接,该寡核苷酸以序列特异性方式结合到双螺旋DNA的主沟上。在靶序列上的三链体形成将药物选择性地定位在三链体位点,从而刺激拓扑异构酶I介导的在该位点的DNA切割。在不断努力优化此策略的过程中,广泛的共轭物由(i)16-20个碱基长的寡核苷酸,(ii)可变长度的烷基接头和(iii)在A或B喹啉上取代的喜树碱衍生物组成设计并合成了环。以核苷酸分辨率对切割位点的分析表明,切割的特异性和效力显着取决于三螺旋结构的长度以及寡核苷酸与毒物之间的接头。优化的杂合分子在邻近三链体的位点诱导强烈且高度特异性的切割。此外,与单独由喜树碱诱导的复合物相比,药物稳定的DNA-拓扑异构酶I裂解复合物显示出对盐诱导的逆转更具抗性。这种经过合理设计的喜树碱偶联物可以提供有用的抗肿瘤药物,选择性地针对带有目标三链结合位点的基因。此外,它们是探测DNA-拓扑异构酶I复合物中分子相互作用的有力工具。

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