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基于吲哚基-喹啉鎓的探针稳定和荧光点亮 G-四链体核酸。

Stabilization and fluorescence light-up of G-quadruplex nucleic acids using indolyl-quinolinium based probes.

机构信息

Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400 076, India.

出版信息

Phys Chem Chem Phys. 2022 Mar 9;24(10):6238-6255. doi: 10.1039/d1cp04718c.

Abstract

G-Quadruplexes (G4s) are four-stranded motifs formed by G-rich nucleic acid sequences. These structures harbor significant biological importance as they are involved in telomere maintenance, transcription, and translation. Owing to their dynamic and polymorphic nature, G4 structures relevant for therapeutic applications need to be stabilized by small-molecule ligands. Some of these ligands turn on fluorescence upon binding to G4 structures, which provides a powerful detection platform for G4 structures. Herein, we report the synthesis of fluorescent ligands based on the indolyl-quinolinium moiety to specifically stabilize G4 structures and sense DNA. CD titration and melting experiments have shown that the lead ligand induces the formation of parallel G4 with preferential stabilization of the and promoter G4s over the telomeric, G4, and duplex DNA. Fluorimetric titration data revealed fluorescence enhancement when these ligands interact with G4 DNA structures. The fluorescence lifetime experiment of the ligand with different DNAs revealed three excited state lifetimes (ns), which indicates more than one binding site. MD studies showed that the ligand exhibits 3 : 1 stoichiometry of binding with G4 DNA and revealed the unique structural features, which impart selectivity toward parallel topology. The ligand was found to have low cytotoxicity and exhibited preferential staining of DNA over RNA. Collectively, the results presented here offer avenues to harness indolyl-quinolinium scaffolds for sensing and selective stabilization of G4 structures.

摘要

G-四链体(G4s)是由富含 G 的核酸序列形成的四链结构。这些结构具有重要的生物学意义,因为它们参与端粒维持、转录和翻译。由于其动态和多态性,需要小分子配体稳定与治疗应用相关的 G4 结构。其中一些配体在与 G4 结构结合时会产生荧光,这为 G4 结构的检测提供了一个强大的平台。在此,我们报告了基于吲哚-喹啉鎓部分的荧光配体的合成,以特异性稳定 G4 结构并检测 DNA。CD 滴定和熔点实验表明,先导配体诱导形成平行 G4,优先稳定 和 启动子 G4 超过端粒、G4 和双链 DNA。荧光滴定数据显示,这些配体与 G4 DNA 结构相互作用时会增强荧光。配体与不同 DNA 的荧光寿命实验显示出三个激发态寿命(ns),这表明存在不止一个结合位点。MD 研究表明,配体与 G4 DNA 以 3:1 的化学计量比结合,并揭示了赋予平行拓扑选择性的独特结构特征。该配体具有低细胞毒性,并表现出对 DNA 的选择性染色优于 RNA。总的来说,这里呈现的结果为利用吲哚-喹啉鎓支架来感应和选择性稳定 G4 结构提供了途径。

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