Department of Biophysics, Molecular Biology and Bioinformatics, University of Calcutta, 92, A.P.C. Road, Kolkata 700009, India.
Mahatma Gandhi Medical Advanced Research Institute (MGMARI), Sri Balaji Vidyapeeth (Deemed to be University), Pondy-Cuddalore Main Road, Pillaiyarkuppam, Pondicherry 607402, India.
Langmuir. 2024 May 14;40(19):10157-10170. doi: 10.1021/acs.langmuir.4c00418. Epub 2024 May 3.
I-Motif (iM) DNA structures represent among the most significant noncanonical nucleic acid configurations. iM-forming DNA sequences are found in an array of vital genomic locations and are particularly frequent in the promoter islands of various oncogenes. Thus, iM DNA is a crucial candidate for anticancer medicines; therefore, binding interactions between iM DNA and small molecular ligands, such as flavonoids, are critically important. Extensive sets of spectroscopic strategies and thermodynamic analysis were utilized in the present investigation to find out the favorable interaction of quercetin (Que), a dietary flavonoid that has various health-promoting characteristics, including anticancer properties, with noncanonical iM DNA structure. Spectroscopic studies and thermal analysis revealed that Que interacts preferentially with HRAS1 iM DNA compared with VEGF, BCL2 iM, and duplex DNA. Que, therefore, emerged as a suitable natural-product-oriented antagonist for targeting HRAS1 iM DNA. The innovative spectroscopic as well as mechanical features of Que and its specific affinity for HRAS1 iM may be useful for therapeutic applications and provide crucial insights for the design of compounds with remarkable medicinal properties.
I-Motif (iM) DNA 结构是最显著的非经典核酸构象之一。形成 iM 的 DNA 序列存在于一系列重要的基因组位置中,特别是在各种致癌基因的启动子岛上更为常见。因此,iM DNA 是抗癌药物的重要候选物;因此,iM DNA 与小分子配体(如类黄酮)之间的结合相互作用至关重要。本研究利用广泛的光谱策略和热力学分析来确定膳食类黄酮槲皮素(Que)与非经典 iM DNA 结构的有利相互作用。光谱研究和热分析表明,Que 与 HRAS1 iM DNA 的相互作用优先于 VEGF、BCL2 iM 和双链 DNA。因此,Que 成为针对 HRAS1 iM DNA 的合适的天然产物导向拮抗剂。Que 的创新光谱和力学特性及其对 HRAS1 iM 的特异性亲和力可用于治疗应用,并为设计具有显著药用特性的化合物提供重要见解。