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稳定人端粒 G-四链体 [d-(TTAGGGT)] 的结构基础由抗癌药物阿霉素。

Structural basis for stabilization of human telomeric G-quadruplex [d-(TTAGGGT)] by anticancer drug adriamycin.

机构信息

Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee, India.

出版信息

J Biomol Struct Dyn. 2021 Feb;39(3):795-815. doi: 10.1080/07391102.2020.1730969. Epub 2020 Feb 27.

Abstract

Besides inhibiting DNA duplication, DNA dependent RNA synthesis and topoisomerase-II enzyme action, anticancer drug adriamycin is found to cause telomere dysfunction and shows multiple strategies of action on gene functioning. We present evidence of binding of adriamycin to parallel stranded intermolecular [d-(TTAGGGT)] G-quadruplex DNA comprising human telomeric DNA by proton and phosphorus-31 nuclear magnetic resonance spectroscopy. Diffusion ordered spectroscopy shows formation of complex between the two molecules. Changes in chemical shift and line broadening of DNA and adriamycin protons suggest participation of specific chemical groups/moieties in interaction. Presence of sequential nuclear Overhauser enhancements at all base quartet steps and absence of large downfield shifts in P resonances give clear proof of absence of intercalation of adriamycin chromophore between base quartets. Restrained molecular dynamics simulations using observed 15 short intermolecular inter proton distance contacts depict stacking of ring D of adriamycin with terminal G6 quartet by displacing T7 base and external groove binding close to T1-T2-A3 bases. The disappearance of imino protons monitored as a function of temperature and differential scanning calorimetry experiments yield thermal stabilization of 24 °C, which is likely to come in the way of telomerase association with telomeres. The findings pave the way for design of alternate anthracycline based drugs with specific modifications at ring D to enhance induced thermal stabilization and use alternate mechanism of binding to G-quadruplex DNA for interference in functional pathway of telomere maintenance by telomerase enzyme besides their well known action on duplex DNA. Communicated by Ramaswamy H. Sarma.

摘要

除了抑制 DNA 复制、DNA 依赖的 RNA 合成和拓扑异构酶 II 酶的作用外,抗癌药物阿霉素还被发现会导致端粒功能障碍,并对基因功能表现出多种作用策略。我们通过质子和磷-31 核磁共振波谱法提供了阿霉素与包含人端粒 DNA 的平行链间 [d-(TTAGGGT)] G-四链体 DNA 结合的证据。扩散有序光谱法显示出两种分子之间形成复合物。DNA 和阿霉素质子的化学位移和线宽变化表明特定化学基团/部分参与相互作用。在所有碱基四联体步骤都存在连续的核奥弗豪瑟增强,而磷共振没有大的场位移,这清楚地证明了阿霉素生色团不在碱基四联体之间插入。使用观察到的 15 个短的分子间质子距离接触进行约束分子动力学模拟,描绘了阿霉素的环 D 通过取代 T7 碱基和靠近 T1-T2-A3 碱基的外部沟结合来与末端 G6 四联体堆积。作为温度函数监测的亚氨基质子的消失和差示扫描量热法实验产生 24°C 的热稳定性,这可能会阻止端粒酶与端粒的结合。这些发现为设计具有环 D 特定修饰的替代蒽环类药物铺平了道路,以增强诱导的热稳定性,并利用与 G-四链体 DNA 的替代结合机制,除了它们对双链 DNA 的已知作用外,干扰端粒酶酶对端粒维持的功能途径。由 Ramaswamy H. Sarma 传达。

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