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锂、钠、钾和铷系列中一个和两个碱金属阳离子通过两个堆叠鸟嘌呤四重奏的通道传导。SIBFA各向异性可极化分子力学势准确性的评估。

Channeling through Two Stacked Guanine Quartets of One and Two Alkali Cations in the Li, Na, K, and Rb Series. Assessment of the Accuracy of the SIBFA Anisotropic Polarizable Molecular Mechanics Potential.

作者信息

Gresh Nohad, Naseem-Khan Sehr, Lagardère Louis, Piquemal Jean-Philip, Sponer Judit E, Sponer Jiri

机构信息

Laboratoire de Chimie Théorique, Sorbonne Universités , UPMC, UMR7616 CNRS, 75006Paris, France.

Institut Universitaire de France, Paris Cedex 05, 75231, France.

出版信息

J Phys Chem B. 2017 Apr 27;121(16):3997-4014. doi: 10.1021/acs.jpcb.7b01836. Epub 2017 Apr 13.

Abstract

Stacking of guanine quartets (GQs) can trigger the formation of DNA or RNA quadruple helices, which play numerous biochemical roles. The GQs are stabilized by alkali cations, mainly K and Na, which can reside in, or channel through, the central axis of the GQ stems. Further, ion conduction through GQ wires can be leveraged for nanochemistry applications. G-quadruplex systems have been extensively studied by classical molecular dynamics (MD) simulations using pair-additive force fields or by quantum-chemical (QC) calculations. However, the non-polarizable force fields are very approximate, while QC calculations lack the necessary sampling. Thus, ultimate description of GQ systems would require long-enough simulations using advanced polarizable molecular mechanics (MM). However, to perform such calculations, it is first mandatory to evaluate the method's accuracy using benchmark QC. We report such an evaluation for SIBFA polarizable MM, bearing on the channeling (movement) of an alkali cation (Li, Na, K, or Rb) along the axis of two stacked G quartets interacting with either one or two ions. The QC energy profiles display markedly different features depending upon the cation but can be retrieved in the majority of cases by the SIBFA profiles. An appropriate balance of first-order (electrostatic and short-range repulsion) and second-order (polarization, charge-transfer, and dispersion) contributions within ΔE is mandatory. With two cations in the channel, the relative weights of the second-order contributions increase steadily upon increasing the ion size. In the G8 complexes with two K or two Rb cations, the sum of polarization and charge-transfer exceeds the first order terms for all ion positions.

摘要

鸟嘌呤四联体(GQs)的堆积可触发DNA或RNA四重螺旋的形成,这些四重螺旋发挥着众多生物化学作用。GQs由碱金属阳离子稳定,主要是K和Na,它们可位于GQ茎的中心轴内或通过该中心轴通道。此外,通过GQ线的离子传导可用于纳米化学应用。G-四链体系统已通过使用对加和力场的经典分子动力学(MD)模拟或量子化学(QC)计算进行了广泛研究。然而,非极化力场非常近似,而QC计算缺乏必要的采样。因此,对GQ系统的最终描述需要使用先进的极化分子力学(MM)进行足够长时间的模拟。然而,要进行此类计算,首先必须使用基准QC评估该方法的准确性。我们报告了对SIBFA极化MM的此类评估,涉及碱金属阳离子(Li、Na、K或Rb)沿着与一个或两个离子相互作用的两个堆叠G四重体的轴的通道化(移动)。QC能量分布根据阳离子的不同显示出明显不同的特征,但在大多数情况下可以通过SIBFA分布来恢复。在ΔE内,一阶(静电和短程排斥)和二阶(极化、电荷转移和色散)贡献的适当平衡是必不可少的。在通道中有两个阳离子时,随着离子尺寸的增加,二阶贡献的相对权重稳步增加。在具有两个K或两个Rb阳离子的G8配合物中,对于所有离子位置,极化和电荷转移的总和超过了一阶项。

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