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四链体二聚体的 3D 结构和平面配体结合的分子动力学研究。

Molecular dynamics studies of the 3D structure and planar ligand binding of a quadruplex dimer.

机构信息

Institute of Theoretical Chemistry, State Key Laboratory of Theoretical and Computational Chemistry, Jilin University, Changchun, 130023, People's Republic of China.

出版信息

J Mol Model. 2011 Mar;17(3):515-26. doi: 10.1007/s00894-010-0746-0. Epub 2010 May 29.

Abstract

G-rich sequences can fold into a four-stranded structure called a G-quadruplex, and sequences with short loops are able to aggregate to form stable quadruplex multimers. Few studies have characterized the properties of this variety of quadruplex multimers. Using molecular modeling and molecular dynamics simulations, the present study investigated a dimeric G-quadruplex structure formed from a simple sequence of d(GGGTGGGTGGGTGGGT) (G1), and its interactions with a planar ligand of a perylene derivative (Tel03). A series of analytical methods, including free energy calculations and principal components analysis (PCA), was used. The results show that a dimer structure with stacked parallel monomer structures is maintained well during the entire simulation. Tel03 can bind to the dimer efficiently through end stacking, and the binding mode of the ligand stacked with the 3'-terminal thymine base is most favorable. PCA showed that the dominant motions in the free dimer occur on the loop regions, and the presence of the ligand reduces the flexibility of the loops. Our investigation will assist in understanding the geometric structure of stacked G-quadruplex multimers and may be helpful as a platform for rational drug design.

摘要

富含 G 的序列可以折叠成一种称为 G-四链体的四链结构,而具有短环的序列能够聚集形成稳定的四链多聚体。很少有研究描述过这种四链多聚体的性质。本研究使用分子建模和分子动力学模拟,研究了由简单序列 d(GGGTGGGTGGGTGGGT) (G1) 形成的二聚体 G-四链体结构,以及它与平面配体苝衍生物 (Tel03) 的相互作用。使用了一系列分析方法,包括自由能计算和主成分分析 (PCA)。结果表明,在整个模拟过程中,具有堆叠平行单体结构的二聚体结构保持良好。Tel03 可以通过末端堆积有效地与二聚体结合,并且配体与 3'-末端胸腺嘧啶碱基堆积的结合方式最有利。PCA 表明,自由二聚体中的主要运动发生在环区,而配体的存在降低了环的灵活性。我们的研究将有助于理解堆叠 G-四链体多聚体的几何结构,并可能作为合理药物设计的平台提供帮助。

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