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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Comparison of Monovalent and Divalent Ion Distributions Around a DNA Duplex with Molecular Dynamics Simulation and A Poisson-Boltzmann Approach
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Comparison of Monovalent and Divalent Ion Distributions Around a DNA Duplex with Molecular Dynamics Simulation and A Poisson-Boltzmann Approach

机译:利用分子动力学模拟和Poisson-Boltzmann方法比较DNA双链体周围单价和二价离子的分布

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摘要

The ion atmosphere created by monovalent (Na~+) or divalent (Mg~(2+)) cations surrounding a B-form DNA duplex were examined using atomistic molecular dynamics (MD) simulations and the nonlinear Poisson- Boltzmann (PB) equation. The ion distributions predicted by the two methods were compared using plots of radial and two-dimensional cation concentrations and by calculating the total number of cations and net solution charge surrounding the DNA. Na~+ ion distributions near the DNA were more diffuse in PB calculations than in corresponding MD simulations, with PB calculations predicting lower concentrations near DNA groove sites and phosphate groups and a higher concentration in the region between these locations. Other than this difference, the Na~+ distributions generated by the two methods largely agreed, as both predicted similar locations of high Na~+ concentration and nearly identical values of the number of cations and the net solution charge at all distances from the DNA. In contrast, there was greater disagreement between the two methods for Mg~(2+) cation concentration profiles, as both the locations and magnitudes of peaks in Mg~(2+) concentration were different. Despite experimental and simulation observations that Mg~(2+) typically maintains its first solvation shell when interacting with nucleic acids, modeling Mg~(2+) as an unsolvated ion during PB calculations improved the agreement of the Mg~(2+) ion atmosphere predicted by the two methods and allowed for values of the number of bound ions and net solution charge surrounding the DNA from PB calculations that approached the values observed in MD simulations.
机译:使用原子分子动力学(MD)模拟和非线性Poisson-Boltzmann(PB)方程检查了围绕B型DNA双链体的单价(Na〜+)或二价(Mg〜(2+))阳离子产生的离子气氛。使用径向和二维阳离子浓度图以及通过计算围绕DNA的阳离子总数和净溶液电荷,比较了通过两种方法预测的离子分布。与相应的MD模拟相比,PB计算中DNA附近的Na〜+离子分布更加分散,PB计算预测DNA凹槽位点和磷酸基团附近的浓度较低,而这些位置之间的区域中的浓度较高。除了这种差异外,两种方法产生的Na〜+分布基本一致,因为两者都预测了高Na〜+浓度的相似位置,并且在距DNA的所有距离处阳离子和净溶液电荷的值几乎相同。相反,由于Mg〜(2+)浓度峰值的位置和大小不同,因此两种方法对Mg〜(2+)阳离子浓度曲线的分歧更大。尽管有实验和模拟观察表明,Mg〜(2+)与核酸相互作用时通常会保留其第一溶剂化壳,但在PB计算过程中将Mg〜(2+)建模为非溶剂化离子可改善Mg〜(2+)离子的一致性两种方法预测的气氛,并考虑到了通过PB计算得出的结合离子数和围绕DNA的净溶液电荷的值,该值接近MD模拟中观察到的值。

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