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Mechanisms of small molecule–DNA interactions probed by single-molecule force spectroscopy

机译:单分子力谱探测小分子-DNA相互作用的机理

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摘要

There is a wide range of applications for non-covalent DNA binding ligands, and optimization of such interactions requires detailed understanding of the binding mechanisms. One important class of these ligands is that of intercalators, which bind DNA by inserting aromatic moieties between adjacent DNA base pairs. Characterizing the dynamic and equilibrium aspects of DNA-intercalator complex assembly may allow optimization of DNA binding for specific functions. Single-molecule force spectroscopy studies have recently revealed new details about the molecular mechanisms governing DNA intercalation. These studies can provide the binding kinetics and affinity as well as determining the magnitude of the double helix structural deformations during the dynamic assembly of DNA–ligand complexes. These results may in turn guide the rational design of intercalators synthesized for DNA-targeted drugs, optical probes, or integrated biological self-assembly processes. Herein, we survey the progress in experimental methods as well as the corresponding analysis framework for understanding single molecule DNA binding mechanisms. We discuss briefly minor and major groove binding ligands, and then focus on intercalators, which have been probed extensively with these methods. Conventional mono-intercalators and bis-intercalators are discussed, followed by unconventional DNA intercalation. We then consider the prospects for using these methods in optimizing conventional and unconventional DNA-intercalating small molecules.
机译:非共价DNA结合配体的应用范围很广,而这种相互作用的优化需要对结合机理的详细了解。这些配体的重要一类是嵌入剂,其通过在相邻的DNA碱基对之间插入芳族部分来结合DNA。表征DNA-嵌入剂复合物组装的动态和平衡方面可以优化针对特定功能的DNA结合。单分子力谱研究最近揭示了有关控制DNA嵌入的分子机制的新细节。这些研究可以提供结合动力学和亲和力,以及确定DNA-配体复合物动态组装过程中双螺旋结构变形的大小。这些结果反过来可以指导为DNA靶向药物,光学探针或集成的生物自组装过程合成的嵌入剂的合理设计。在本文中,我们调查了实验方法的进展以及用于理解单分子DNA结合机制的相应分析框架。我们简要讨论了次要和主要的凹槽结合配体,然后重点介绍了嵌入剂,这些方法已对它们进行了广泛的研究。讨论了常规的单嵌入剂和双嵌入剂,然后讨论了非常规的DNA嵌入。然后,我们考虑使用这些方法优化常规和非常规DNA插入小分子的前景。

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