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摆动↔沃森-克里克G*·2AP(w)↔G·2AP(WC)以及A·2AP(w)↔A*·2AP(WC)互变异构的物理化学特征:一项量子力学/量子拓扑原子分子理论综合研究

Physico-chemical profiles of the wobble ↔ Watson-Crick G*·2AP(w) ↔ G·2AP(WC) and A·2AP(w) ↔ A*·2AP(WC) tautomerisations: a QM/QTAIM comprehensive survey.

作者信息

Brovarets' Ol'ha O, Voiteshenko Ivan S, Hovorun Dmytro M

机构信息

Department of Molecular and Quantum Biophysics, Institute of Molecular Biology and Genetics, National Academy of Sciences of Ukraine, 150 Akademika Zabolotnoho Str., 03680 Kyiv, Ukraine.

出版信息

Phys Chem Chem Phys. 2017 Dec 20;20(1):623-636. doi: 10.1039/c7cp05139e.

Abstract

This study is intended to clarify in detail the tautomeric transformations of the wobble (w) G*·2AP(w) and A·2AP(w) nucleobase mispairs involving 2-aminopurine (2AP) into the Watson-Crick (WC) G·2AP(WC) and A*·2AP(WC) base mispairs (asterisks denote mutagenic tautomers of the DNA bases), respectively, by quantum-mechanical methods and Bader's Quantum Theory of Atoms in Molecules. Our previously reported methodology has been used, which allows the evolution of the physico-chemical parameters to be tracked along the entire internal reaction coordinate (IRC), not exclusively in the stationary states of these reactions. These biologically important G*·2AP(w) ↔ G·2AP(WC) and A·2AP(w) ↔ A*·2AP(WC) w ↔ WC tautomerisations, which are involved in mutagenic tautomerically-conformational pathways, determine the origin of the transitions and transversions induced by 2AP. In addition, it is established that they proceed through planar, highly stable, zwitterionic transition states and they exhibit similar physico-chemical profiles and stages of sequential intrapair proton transfer, followed by spatial rearrangement of the nucleobases relative to each other within the base pairs. These w ↔ WC tautomerisations occur non-dissociatively and are accompanied by a significant alteration in geometry (from wobble to Watson-Crick and vice versa) and redistribution of the specific intermolecular interactions, which can be divided into 10 patterns including AHB H-bonds and loosened A-H-B covalent bridges along the IRC of tautomerisation. Based on the redistribution of the geometrical and electron-topological parameters of the intrapair hydrogen bonds, exactly 9 key points have been allocated to characterize the evolution of these reactions.

摘要

本研究旨在通过量子力学方法和巴德分子中原子的量子理论,详细阐明涉及2-氨基嘌呤(2AP)的摆动(w)G*·2AP(w)和A·2AP(w)核碱基错配分别转变为沃森-克里克(WC)G·2AP(WC)和A*·2AP(WC)碱基错配(星号表示DNA碱基的诱变互变异构体)的互变异构转变。我们采用了先前报道的方法,该方法能够沿着整个内反应坐标(IRC)追踪物理化学参数的演变,而不仅仅是在这些反应的稳态下进行追踪。这些具有生物学重要性的G*·2AP(w)↔G·2AP(WC)和A·2AP(w)↔A*·2AP(WC)的w↔WC互变异构,参与诱变互变异构-构象途径,决定了由2AP诱导的转换和颠换的起源。此外,已确定它们通过平面、高度稳定的两性离子过渡态进行,并且它们表现出相似的物理化学特征和成对质子转移的连续阶段,随后碱基对中的核碱基彼此之间发生空间重排。这些w↔WC互变异构以非解离方式发生,并伴随着几何结构的显著变化(从摆动到沃森-克里克,反之亦然)以及特定分子间相互作用的重新分布,可以沿着互变异构的IRC分为10种模式,包括AHB氢键和松弛的A-H-B共价桥。基于配对内氢键的几何和电子拓扑参数的重新分布,精确分配了9个关键点来表征这些反应的演变。

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