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水介导的相互作用增强了 DNA 四重体中胞嘧啶四联体相邻空腔中碱性 earth 阳离子的螯合作用。

Water-Mediated Interactions Enhance Alkaline Earth Cation Chelation in Neighboring Cavities of a Cytosine Quartet in the DNA Quadruplex.

机构信息

Faculty of Physical Chemistry, University of Belgrade, Studentski trg 12-16 11000 Belgrade, Serbia.

Institute for Multidisciplinary Research, University of Belgrade, Kneza Višeslava 1, 11030 Belgrade, Serbia.

出版信息

J Phys Chem B. 2021 Nov 4;125(43):11996-12005. doi: 10.1021/acs.jpcb.1c05598. Epub 2021 Oct 25.

Abstract

Larger Coulombic repulsion between divalent cations compared to the monovalent counterparts dictates the cation-cation distance in the central ion channel of quadruplexes. In this work, density functional theory and a continuum solvation model were employed to study bond energies of alkaline earth cations in adjacent cavities of the central ion channel. Four crystallized tetramolecular quadruplexes with various geometric constraints and structural motifs available in the Protein Data Bank were examined in order to understand how the cation binding affinities could be increased in aqueous solution. A cytosine quartet sandwiched between guanine quartets has a larger bond energy of the second alkaline earth cation in comparison with guanine and uracil quartets. Four highly conserved hydrogen-bonded water molecules in the center of the cytosine quartet are responsible for a higher electrostatic interaction with the cations in comparison with guanines' carbonyl groups. The reported findings are valuable for the design of synthetic quadruplexes templated with divalent cations for optoelectronic applications.

摘要

与单价阳离子相比,二价阳离子之间的库仑斥力更大,这决定了四重螺旋体中心离子通道中阳离子-阳离子的距离。在这项工作中,我们采用密度泛函理论和连续溶剂化模型研究了中心离子通道相邻空腔中碱土金属阳离子的键能。我们研究了四种结晶的四聚体四重螺旋体,这些四重螺旋体具有蛋白质数据库中可用的各种几何约束和结构模体,以了解如何提高阳离子在水溶液中的结合亲和力。与鸟嘌呤和尿嘧啶四聚体相比,夹在鸟嘌呤四聚体之间的胞嘧啶四聚体中的第二个碱土金属阳离子具有更大的键能。在胞嘧啶四聚体中心的四个高度保守的氢键合水分子与阳离子的静电相互作用更强,而不是与鸟嘌呤的羰基。报道的研究结果对于设计基于二价阳离子的用于光电应用的合成四重螺旋体具有重要意义。

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