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平行 G-四链体的构象可塑性——对双链-四链体基序的影响。

Conformational Plasticity of Parallel G-Quadruplex─Implications on Duplex-Quadruplex Motifs.

机构信息

Department of Chemistry, Indian Institute of Science Education and Research, Bhopal 462066, India.

Centre de RMN à Très Hauts Champs, UMR 5082 (CNRS, Ecole Normale Supérieure de Lyon, Université Claude Bernard Lyon 1), University of Lyon, Villeurbanne 69100, France.

出版信息

J Am Chem Soc. 2023 Jul 19;145(28):15370-15380. doi: 10.1021/jacs.3c03218. Epub 2023 Jul 10.

Abstract

DNA G-quadruplexes are essential motifs in molecular biology performing a wide range of functions enabled by their unique and diverse structures. In this study, we focus on the conformational plasticity of the most abundant and biologically relevant parallel G-quadruplex topology. A multipronged approach of structure survey, solution-state NMR spectroscopy, and molecular dynamics simulations unravels subtle yet essential features of the parallel G-quadruplex topology. Stark differences in flexibility are observed for the nucleotides depending upon their positioning in the tetrad planes that are intricately correlated with the conformational sampling of the propeller loop. Importantly, the terminal nucleotides in the 5'-end versus the 3'-end of the parallel quadruplex display differential dynamics that manifests their ability to accommodate a duplex on either end of the G-quadruplex. The conformational plasticity characterized in this study provides essential cues toward biomolecular processes such as small molecular binding, intermolecular quadruplex stacking, and implications on how a duplex influences the structure of a neighboring quadruplex.

摘要

DNA 四链体是分子生物学中的重要基序,具有独特多样的结构,使其能够发挥广泛的功能。在这项研究中,我们专注于最丰富和最具生物学相关性的平行 G-四链体拓扑结构的构象可塑性。结构调查、溶液态 NMR 光谱和分子动力学模拟的多管齐下的方法揭示了平行 G-四链体拓扑结构的微妙但至关重要的特征。根据核苷酸在四联体平面中的位置,观察到核苷酸的柔韧性存在明显差异,这与推进器环的构象采样密切相关。重要的是,平行四链体 5'端和 3'端的末端核苷酸显示出不同的动力学,这表明它们能够在 G-四链体的两端容纳双链。本研究中表征的构象可塑性为小分子结合、分子间四链体堆积等生物分子过程提供了重要线索,并说明了双链如何影响相邻四链体的结构。

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