化学
溴化乙锭
DNA
核酸
核糖核酸
猝灭(荧光)
氢键
生物物理学
分子动力学
立体化学
对接(动物)
莫林
荧光
生物化学
计算化学
分子
有机化学
医学
物理
病理
量子力学
生物
基因
护理部
作者
Sana Quraishi,Debanjan Saha,Kalpana Kumari,Anupam Nath Jha,Atanu Singha Roy
标识
DOI:10.1016/j.ijbiomac.2023.128568
摘要
Esculetin is a well-known coumarin derivative found abundantly in nature possessing an extensive array of pharmacological and therapeutic properties. Consequently, to comprehend its molecular recognition mechanism, our objective is to conduct a complete investigation of its interactions with the nucleic acid, specifically ct-DNA, and t-RNA, using spectroscopic and computational techniques. The intrinsic fluorescence of esculetin is quenched when it interacts with ct-DNA and t-RNA, and this occurs through a static quenching mechanism. The thermodynamic parameters demonstrated that the interaction is influenced by hydrogen bonding and weak van der Waals forces. CD and FT-IR results revealed no conformational changes in ct-DNA and t-RNA structure on binding with esculetin. Furthermore, competitive displacement assay with ethidium bromide, melting temperature, viscosity measurement, and potassium iodide quenching experiments, reflected that esculetin probably binds to the minor groove of ct-DNA. The molecular docking results provided further confirmation for the spectroscopic findings, including the binding location of esculetin and binding energies of esculetin complexes with ct-DNA and t-RNA. Molecular dynamics simulation studies demonstrated the conformational stability and flexibility of nucleic acids.
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