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Microscopic picture of water-ethylene glycol interaction near a model DNA by computer simulation: Concentration dependence structure and localized thermodynamics

机译:通过计算机模拟在模型DNA附近的水-乙二醇相互作用的显微照片:浓度依赖性结构和局部热力学

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摘要

It is known that crowded molecular environment affects the structure, thermodynamics, and dynamics of macromolecules. Most of the previous works on molecular crowding have majorly focused on the behavior of the macromolecule with less emphasis on the behavior of the crowder and water molecules. In the current study, we have precisely focused on the behavior of the crowder, (ethylene glycol (EG)), salt ions, and water in the presence of a DNA with the increase of the EG concentration. We have probed the behavior of water and crowder using molecular dynamics (MD) simulation and by calculating localized thermodynamic properties. Our results show an interesting competition between EG and water molecules to make hydrogen bonds (H-bond) with DNA. Although the total number of H-bonds involving DNA with both EG and water remains essentially same irrespective of the increase in EG concentration, there is a proportional change in the H-bonding pattern between water-water, EG-EG, and EG-water near DNA and in bulk. At low concentrations of EG, the displacement of water molecules near DNA is relatively easy. However, the displacement of water becomes more difficult as the concentration of EG increases. The density of Na+ (Cl-) near DNA increases (decreases) as the concentration of EG is increased. The density of Cl- near Na+ increases with the increase in EG concentration. It was also found that the average free energy per water in the first solvation shell increases with the increase in EG concentration. Putting all these together, a microscopic picture of EG, water, salt interaction in the presence of DNA, as a function of EG concentration, has emerged.
机译:众所周知,拥挤的分子环境会影响大分子的结构,热力学和动力学。先前有关分子拥挤的大多数研究主要集中在大分子的行为上,而较少关注分子的拥挤和水分子的行为。在当前的研究中,我们精确地关注了在DNA存在的情况下随着EG浓度的增加,拥挤剂(乙二醇(EG)),盐离子和水的行为。我们已经使用分子动力学(MD)模拟并通过计算局部热力学性质来探究水和拥挤物的行为。我们的结果表明,EG和水分子之间的有趣竞争是与DNA形成氢键(H键)。尽管与EG和水有关的涉及DNA的EG和水的H键总数基本保持不变,但在水-水,EG-EG和EG-水之间的H键模式存在比例变化接近DNA且散装。在低浓度的EG下,DNA附近水分子的置换相对容易。然而,随着EG浓度的增加,水的置换变得更加困难。随着EG浓度的增加,DNA附近的Na + (Cl -)的密度增加(减小)。 Na + 附近的Cl -的密度随着EG浓度的增加而增加。还发现,第一溶剂化壳中每水的平均自由能随EG浓度的增加而增加。将所有这些放在一起,就出现了在DNA存在下作为EG浓度函数的EG,水,盐相互作用的微观图像。

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