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分子识别的平行 G-四链体 [d-(TTGGGGT)]₄ 含端粒 DNA 序列的抗癌药物柔红霉素:NMR 结构和热稳定性。

Molecular Recognition of Parallel G-quadruplex [d-(TTGGGGT)]₄ Containing Telomeric DNA Sequence by Anticancer Drug Daunomycin: NMR-Based Structure and Thermal Stability.

机构信息

Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee 247667, India.

出版信息

Molecules. 2018 Sep 5;23(9):2266. doi: 10.3390/molecules23092266.

Abstract

The anticancer drug daunomycin exerts its influence by multiple strategies of action to interfere with gene functioning. Besides inhibiting DNA/RNA synthesis and topoisomerase-II, it affects the functional pathway of telomere maintenance by the telomerase enzyme. We present evidence of the binding of daunomycin to parallel-stranded tetramolecular [d-(TTGGGGT)]₄ guanine (G)-quadruplex DNA comprising telomeric DNA from by surface plasmon resonance and Diffusion Ordered SpectroscopY (DOSY). Circular Dichroism (CD) spectra show the disruption of daunomycin dimers, suggesting the end-stacking and groove-binding of the daunomycin monomer. Proton and phosphorus-31 Nuclear Magnetic Resonance (NMR) spectroscopy show a sequence-specific interaction and a clear proof of absence of intercalation of the daunomycin chromophore between base quartets or stacking between G-quadruplexes. Restrained molecular dynamics simulations using observed short interproton distance contacts depict interaction at the molecular level. The interactions involving ring A and daunosamine protons, the stacking of an aromatic ring of daunomycin with a terminal G6 quartet by displacing the T7 base, and external groove-binding close to the T1⁻T2 bases lead to the thermal stabilization of 15 °C, which is likely to inhibit the association of telomerase with telomeres. The findings have implications in the structure-based designing of anthracycline drugs as potent telomerase inhibitors.

摘要

抗癌药物柔红霉素通过多种作用策略发挥作用,干扰基因功能。除了抑制 DNA/RNA 合成和拓扑异构酶-II 外,它还通过端粒酶影响端粒维持的功能途径。我们通过表面等离子体共振和扩散有序光谱(DOSY)展示了柔红霉素与由来自 的端粒 DNA 组成的平行链四聚体 [d-(TTGGGGT)]₄ 鸟嘌呤 (G)-四链体 DNA 的结合证据。圆二色性(CD)光谱显示柔红霉素二聚体的破坏,表明柔红霉素单体的末端堆积和沟结合。质子和磷-31 核磁共振(NMR)光谱显示序列特异性相互作用,并清楚地证明柔红霉素生色团不在碱基四合子之间插入或 G-四链体之间堆积。使用观察到的短质子间距离接触进行的约束分子动力学模拟描绘了分子水平上的相互作用。涉及环 A 和 daunosamine 质子的相互作用、柔红霉素的一个芳环与末端 G6 四合子堆叠,通过取代 T7 碱基,以及靠近 T1⁻T2 碱基的外部沟结合导致 15°C 的热稳定性增加,这可能抑制端粒酶与端粒的结合。这些发现对基于结构的蒽环类药物设计为有效的端粒酶抑制剂具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50e6/6225185/4acc4793ef44/molecules-23-02266-g001.jpg

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