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配体与 G-四链体 DNA 的结合:紫外共振拉曼光谱的新见解。

Ligand binding to G-quadruplex DNA: new insights from ultraviolet resonance Raman spectroscopy.

机构信息

Elettra-Sincrotrone Trieste S. C. p. A., Science Park, Trieste, I-34149, Italy.

Department of Pharmacy, University of Naples Federico II, Naples, I-80131, Italy.

出版信息

Phys Chem Chem Phys. 2020 Apr 15;22(15):8128-8140. doi: 10.1039/d0cp01022g.

Abstract

G-Quadruplexes (G4s) are noncanonical nucleic acid structures involved in the regulation of several biological processes of many organisms. The rational design of G4-targeting molecules developed as potential anticancer and antiviral therapeutics is a complex problem intrinsically due to the structural polymorphism of these peculiar DNA structures. The aim of the present work is to show how Ultraviolet Resonance Raman (UVRR) spectroscopy can complement other techniques in providing valuable information about ligand/G4 interactions in solution. Here, the binding of BRACO-19 and Pyridostatin - two of the most potent ligands - to selected biologically relevant G4s was investigated by polarized UVRR scattering at 266 nm. The results give new insights into the binding mode of these ligands to G4s having different sequences and topologies by performing an accurate analysis of peaks assigned to specific groups and their changes upon binding. Indeed, the UVRR data not only show that BRACO-19 and Pyridostatin interact with different G4 sites, but also shed light on the ligand and G4 chemical groups really involved in the interaction. In addition, UVRR results complemented by circular dichroism data clearly indicate that the binding mode of a ligand can also depend on the conformation(s) of the target G4. Overall, these findings demonstrate the utility of using UVRR spectroscopy in the investigation of G4s and G4-ligand interactions in solution.

摘要

四链体(G4s)是参与许多生物过程调节的非经典核酸结构。由于这些特殊 DNA 结构的结构多态性,开发靶向 G4 的分子作为潜在的抗癌和抗病毒治疗药物是一个复杂的问题。本工作旨在展示紫外共振拉曼(UVRR)光谱如何与其他技术相结合,提供有关配体/G4 在溶液中相互作用的有价值信息。在这里,通过在 266nm 处进行偏振 UVRR 散射,研究了 BRACO-19 和 Pyridostatin(两种最有效的配体之一)与选定的具有生物学相关性的 G4 的结合。通过对分配给特定基团的峰及其结合时的变化进行精确分析,结果深入了解了这些配体与具有不同序列和拓扑结构的 G4 的结合模式。事实上,UVRR 数据不仅表明 BRACO-19 和 Pyridostatin 与不同的 G4 结合位点相互作用,而且还阐明了配体和 G4 化学基团真正参与相互作用。此外,与圆二色性数据相结合的 UVRR 结果清楚地表明,配体的结合模式也可能取决于靶 G4 的构象。总体而言,这些发现证明了在溶液中研究 G4 和 G4-配体相互作用时使用 UVRR 光谱的实用性。

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