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非嵌入型抗肿瘤药物与DNA聚合物的结合:双季铵杂环的结构效应

Binding of nonintercalative antitumor drugs to DNA-polymers: structural effects of bisquaternary ammonium heterocycles.

作者信息

Burckhardt G, Zimmer C, Baguley B

机构信息

Akademie der Wissenschaften der DDR, Zentralinstitut Für Mikrobiologie und Experimentelle Therapie, Jena.

出版信息

J Biomol Struct Dyn. 1987 Apr;4(5):813-31. doi: 10.1080/07391102.1987.10507680.

Abstract

The binding of the antitumor agents SN-16814 nd SN-13232 to various DNA's in solution was monitored by CD and UV absorption measurements. In addition comparative studies with dA.dT containing duplex DNA of the related ligands SN-6136 and SN-6324 were included with respect to effects of structural variations. In general all four ligands show a dA.dT preference in their binding affinity to DNA. Differences were observed for the reaction of SN-16814 which contains bicyclic ring system: it has a lower base pair selectivity, shows some affinity to poly(dG-dC).poly(dG-dC), poly(rA).poly(rU) and poly(rU). The binding mechanism of SN-16814 is associated with a significant time dependent binding effect in CD spectra and UV absorption in case of reaction with poly(dA).poly(dT) and poly(dI).poly(dC) indicating a slow kinetics. The preferred binding to dA.dT base pairs in DNA decreases in the order from SN-61367 greater than SN-13232 greater than SN-6324,SN-16814 as judged from CD titration studies, salt dissociation and melting temperature data. Competitive binding experiments with netropsin (Nt) or distamycin-5 revealed that SN-16814 and SN-13232 are displaced from poly(dA.dT).poly(dA-dT) suggesting that both ligands are less strongly bound than Nt and Dst-5 within the minor groove of B-DNA. These studies are consistent with results of the DNAse I cleavage of poly(dA-dT).poly(dA-dT) which show the same relative order of inhibition of the cleavage reaction due to ligand binding. The results suggest that the variability of the DNA binding and dA.dT sequence specificity may reside in the adaptability of benzamide-type ligands in the helical groove which is influenced by distinct structural modifications of the ligand conformation.

摘要

通过圆二色(CD)和紫外吸收测量监测抗肿瘤药物SN - 16814和SN - 13232与溶液中各种DNA的结合情况。此外,还纳入了与相关配体SN - 6136和SN - 6324的含dA.dT双链DNA的比较研究,以探讨结构变异的影响。总体而言,所有四种配体在与DNA的结合亲和力上都表现出对dA.dT的偏好。对于含有双环系统的SN - 16814的反应观察到了差异:它具有较低的碱基对选择性,对聚(dG - dC).聚(dG - dC)、聚(rA).聚(rU)和聚(rU)表现出一定亲和力。SN - 16814的结合机制与在与聚(dA).聚(dT)和聚(dI).聚(dC)反应时CD光谱和紫外吸收中显著的时间依赖性结合效应相关,表明动力学缓慢。根据CD滴定研究、盐解离和熔解温度数据判断,DNA中对dA.dT碱基对的优先结合顺序为SN - 6136>SN - 13232>SN - 6324>SN - 16814。与纺锤菌素(Nt)或偏端霉素 - 5的竞争性结合实验表明,SN - 16814和SN - 13232从聚(dA.dT).聚(dA - dT)上被取代,这表明在B - DNA小沟内,这两种配体的结合都不如Nt和Dst - 5牢固。这些研究与聚(dA - dT).聚(dA - dT)的DNA酶I切割结果一致,该结果显示由于配体结合导致切割反应抑制的相对顺序相同。结果表明,DNA结合和dA.dT序列特异性的变异性可能存在于苯甲酰胺型配体在螺旋沟中的适应性,这受到配体构象不同结构修饰的影响。

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