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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Evaluation of the influence of the internal aqueous solvent structure on electrostatic interactions at the protein-solvent interface by nonlocal continuum electrostatic approach
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Evaluation of the influence of the internal aqueous solvent structure on electrostatic interactions at the protein-solvent interface by nonlocal continuum electrostatic approach

机译:通过非局部连续静电方法评估内部水溶剂结构对蛋白质-溶剂界面上静电相互作用的影响

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摘要

The dielectric properties of the polar solvent on the protein-solvent interface at small intercharge distances are still poorly explored. To deconvolute this problem and to evaluate the pair-wise electrostatic interaction (PET) energies of the point charges located at the protein-solvent interface we used a nonlocal (NL) electrostatic approach along with a static NL dielectric response function of water. The influence of the aqueous solvent microstructure (determined by a strong nonelectrostatic correlation effect between water dipoles within the orientational Debye polarization mode) on electrostatic interactions at the interface was studied in our work. It was shown that the PEI energies can be significantly higher than the energies evaluated by the classical (local) consideration, treating water molecules as belonging to the bulk solvent with a high dielectric constant. Our analysis points to the existence of a rather extended, effective low-dielectric interfacial water shell on the Protein surface. The main dielectric properties of this shell (effective thickness together with distance- and orientation-dependent dielectric permittivity function) were evaluated. The dramatic role of this shell was demonstrated when estimating the protein association rate constants. (c) 2007 Wiley Periodicals, Inc.
机译:在小间距电荷距离下,蛋白质-溶剂界面上极性溶剂的介电性能仍未得到很好的研究。为了对这个问题进行反卷积并评估位于蛋白质-溶剂界面的点电荷的成对静电相互作用(PET)能量,我们使用了非局部(NL)静电方法以及水的静态NL介电响应函数。在我们的工作中,研究了水性溶剂微观结构(由定向德拜极化模式内水偶极子之间的强非静电相关效应决定)对界面上静电相互作用的影响。结果表明,将水分子视为介电常数高的本体溶剂,PEI能量可以大大高于通过经典(局部)考虑评估的能量。我们的分析指出,在蛋白质表面上存在相当扩展的有效的低介电界面水壳。评估了该壳的主要介电性能(有效厚度以及与距离和方向有关的介电常数)。当估计蛋白质缔合速率常数时,证明了这种壳的戏剧性作用。 (c)2007年Wiley Periodicals,Inc.

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