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多光谱方法揭示了抗癌药物米托蒽醌与聚(dG-dC)。聚(dG-dC)和聚(dA-dT)。聚(dA-dT)的不同相互作用模式。

Multispectroscopic methods reveal different modes of interaction of anti cancer drug mitoxantrone with Poly(dG-dC).Poly(dG-dC) and Poly(dA-dT).Poly(dA-dT).

机构信息

Department of Chemistry, National Institute of Technology Hamirpur, Hamirpur 177 001, India.

出版信息

J Photochem Photobiol B. 2013 Oct 5;127:78-87. doi: 10.1016/j.jphotobiol.2013.07.023. Epub 2013 Aug 2.

Abstract

The interaction of mitoxantrone with alternating Poly(dG-dC).Poly(dG-dC) and Poly(dA-dT).Poly(dA-dT) duplex has been studied by absorption, fluorescence and Circular Dichroism (CD) spectroscopy at Drug to Phosphate base pair ratios D/P=20.0-0.04. Binding to GC polymer occurs in two distinct modes: partial stacking characterized by red shifts of 18-23nm at D/P=0.2-0.8 and external binding at D/P=1.0-20.0 whereas that to AT polymer occurs externally in the entire range of D/P. The binding constant and number of binding sites is 3.7×10(5)M(-1), 0.3 and 1.3× 10(4)M(-1), 1.5 in GC and AT polymers, respectively at low D/P ratios. CD binding isotherms show breakpoints at D/P=0.1, 0.5 and 0.25, 0.5 in GC and AT polymers, respectively. The intrinsic CD bands indicate that the distortions in GC polymer are significantly higher than that in AT polymer. Docking studies show partial insertion of mitoxantrone rings between to GC base pairs in alternating GC polymer. Side chains of mitoxantrone interact specifically with base pairs and DNA backbone. The studies are relevant to the understanding of suppression or inhibition of DNA cleavage on formation of ternary complex with topoisomerase-II enzyme and hence the anti cancer action.

摘要

米托蒽醌与交替聚(dG-dC)。聚(dG-dC)和聚(dA-dT)。聚(dA-dT)双链的相互作用通过吸收、荧光和圆二色性(CD)光谱在药物与磷酸盐碱基对比 D/P=20.0-0.04 下进行了研究。与 GC 聚合物的结合以两种不同的模式发生:部分堆叠,特征是在 D/P=0.2-0.8 时红移 18-23nm,以及在 D/P=1.0-20.0 时外部结合,而与 AT 聚合物的结合则在整个 D/P 范围内外部发生。在低 D/P 比时,结合常数和结合位点数分别为 3.7×10(5)M(-1)、0.3 和 1.3×10(4)M(-1)、1.5,在 GC 和 AT 聚合物中。CD 结合等温线在 D/P=0.1、0.5 和 0.25、0.5 处显示出拐点,分别在 GC 和 AT 聚合物中。固有 CD 带表明 GC 聚合物中的扭曲明显高于 AT 聚合物。对接研究表明,米托蒽醌环部分插入交替 GC 聚合物中的 GC 碱基对之间。米托蒽醌的侧链与碱基对和 DNA 骨架特异性相互作用。这些研究对于理解与拓扑异构酶-II 酶形成三元复合物时抑制或抑制 DNA 切割以及抗癌作用具有重要意义。

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