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使用带有AMBER DNA OL15和配体GAFF2力场的分子动力学结合模拟探究BRACO19与平行链人类端粒G-四链体的结合途径。

Probing the Binding Pathway of BRACO19 to a Parallel-Stranded Human Telomeric G-Quadruplex Using Molecular Dynamics Binding Simulation with AMBER DNA OL15 and Ligand GAFF2 Force Fields.

作者信息

Machireddy Babitha, Kalra Gurmannat, Jonnalagadda Subash, Ramanujachary Kandalam, Wu Chun

机构信息

College of Science and Mathematics, Rowan University , Glassboro, New Jersey 08028, United States.

出版信息

J Chem Inf Model. 2017 Nov 27;57(11):2846-2864. doi: 10.1021/acs.jcim.7b00287. Epub 2017 Nov 1.

DOI:10.1021/acs.jcim.7b00287
PMID:29028340
Abstract

Human telomeric DNA G-quadruplex has been identified as a good therapeutic target in cancer treatment. G-quadruplex-specific ligands that stabilize the G-quadruplex have great potential to be developed as anticancer agents. Two crystal structures (an apo form of parallel stranded human telomeric G-quadruplex and its holo form in complex with BRACO19, a potent G-quadruplex ligand) have been solved, yet the binding mechanism and pathway remain elusive. In this study, we simulated the binding of a free BRACO19 molecule to the apo form of the G-quadruplex using the latest AMBER DNA (OL15) and ligand (GAFF2) force fields. Three binding modes have been identified: top stacking, bottom intercalation, and groove binding. Bottom intercalation (51% of the population) resembles the bottom binding pose in the complex crystal structure very well. The groove binding mode is less stable than the bottom binding mode and is likely to be an intermediate state leading to the bottom binding mode. A flip-insertion mechanism was observed in the bottom intercalation mode, during which flipping of the bases outward makes space for ligand insertion, after which the bases flip back to increase the stability of the complex. In addition to reproducing the base-flipping behavior for some loop residues upon ligand binding, the direct alignment type of the ATAT-tetrad was observed in our simulations for the first time. These successes provide initial support for using this combination of the OL15 and GAFF2 force fields to study quadruplex-ligand interactions.

摘要

人类端粒DNA G-四链体已被确定为癌症治疗中的一个良好治疗靶点。能够稳定G-四链体的G-四链体特异性配体具有很大的潜力被开发为抗癌药物。目前已解析出两种晶体结构(平行链人类端粒G-四链体的无配体形式及其与强效G-四链体配体BRACO19形成的复合物的全配体形式),但其结合机制和途径仍不清楚。在本研究中,我们使用最新的AMBER DNA(OL15)和配体(GAFF2)力场模拟了游离BRACO19分子与G-四链体无配体形式的结合。已确定三种结合模式:顶部堆积、底部插入和沟槽结合。底部插入(占总体的51%)与复合物晶体结构中的底部结合姿势非常相似。沟槽结合模式比底部结合模式稳定性差,可能是导致底部结合模式的中间状态。在底部插入模式中观察到一种翻转插入机制,在此过程中碱基向外翻转以腾出空间供配体插入,之后碱基再翻转回来以增加复合物的稳定性。除了在配体结合时再现一些环残基的碱基翻转行为外,我们的模拟中首次观察到了ATAT-四联体的直接排列类型。这些成果为使用OL15和GAFF2力场的这种组合来研究四链体-配体相互作用提供了初步支持。

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