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首页> 外文期刊>Molecular simulation >Interaction of alginate single-chain polyguluronate segments with mono- and divalent metal cations: A comparative molecular dynamics study
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Interaction of alginate single-chain polyguluronate segments with mono- and divalent metal cations: A comparative molecular dynamics study

机译:海藻酸盐单链多古洛糖酸酯链段与单价和二价金属阳离子的相互作用:分子动力学比较研究

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摘要

The interaction of a set of monovalent (Na~+, K~+) and divalent (Mg~(2+), Ca~(2+)) metal cations with single-chain polyguluronate (periodic chain based on a dodecameric repeat unit, 21-helical conformation) is investigated using explicit-solvent molecular dynamics simulations (at 300K and 1 bar). A total of 14 (neutralising) combinations of the different ions are considered (single type of cation or simultaneous presence of two types of cation, either in the presence or absence of chloride anions). The main observations are: (1) the chain conformation and intramolecular hydrogen bonding is insensitive to the counter-ion environment; (2) the binding of the cations is essentially non-specific for all ions considered (counter-ion atmosphere confined within a cylinder of high ionic density, but no well-defined binding sites); (3) the density and tightness of the distributions of the different cations within the counter-ion atmosphere follow the approximate sequence Ca~(2+)Mg~(2+) > K ~+ ~ Na~+ (4) the solvent-separated binding of the cations to the carboxylate groups of the chain is frequent, and its occurrence follows the approximate sequence K~+ > Na~+ > Ca ~(2+) > Mg~(2+) (contact-binding events as well as the binding of a cation to multiple carboxylate groups are very infrequent); and (5) the counter-ion atmosphere typically leads to a complete screening of the chain charge within 1.0-1.2nm of the chain axis and, for most systems, to a charge reversal at about 1.5nm (i.e. the effective chain charge becomes positive at this distance and as high in magnitude as one-quarter of the bare chain charge, before slowly decreasing to zero). These findings agree well (in a qualitative sense) with available experimental data and predictions from simple analytical models, and provide further insight concerning the nature of alginate-cation interactions in aqueous solution.
机译:一组单价(Na〜+,K〜+)和二价(Mg〜(2+),Ca〜(2+))金属阳离子与单链多古洛糖酸酯(基于十二聚体重复单元的周期链)的相互作用,使用显式溶剂分子动力学模拟(在300K和1 bar下)研究21-螺旋构象)。总共考虑了14种(中和)不同离子的组合(单一类型的阳离子或同时存在两种类型的阳离子,无论是否存在氯离子)。主要观察结果是:(1)链构象和分子内氢键对平衡离子环境不敏感。 (2)阳离子的结合对于所考虑的所有离子基本上是非特异性的(平衡离子气氛限制在高离子密度的圆柱体内,但没有明确的结合位点); (3)抗衡离子气氛中不同阳离子分布的密度和紧密度遵循Ca〜(2+)Mg〜(2+)> K〜+〜Na〜+的近似顺序(4)溶剂-阳离子与链的羧酸根基团的分离结合很频繁,并且其出现遵循以下近似顺序:K〜+​​> Na〜+> Ca〜(2+)> Mg〜(2+)(也包括接触结合事件因为阳离子很少会与多个羧酸根基团结合); (5)抗衡离子气氛通常会导致在链轴的1.0-1.2nm范围内完全屏蔽链电荷,并且对于大多数系统而言,会导致约1.5nm处的电荷反转(即有效链电荷变为正电荷)在这个距离上,其幅度高达裸链电荷的四分之一,然后慢慢降低到零。这些发现与从简单分析模型获得的可用实验数据和预测非常吻合(从质的角度而言),并提供了有关水溶液中藻酸盐-阳离子相互作用性质的进一步见解。

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