Swanson Jessica M J, Mongan John, McCammon J Andrew
J Phys Chem B. 2005 Aug 11;109(31):14769-72. doi: 10.1021/jp052883s.
Many recent advances in Poisson-Boltzmann and generalized Born implicit solvent models have used atom-centered polynomial or Gaussian functions to define the boundary separating low and high dielectric regions. In contrast to the Lee and Richards molecular surface, atom-centered surfaces result in interatomic crevices and buried pockets of high dielectric which are too small for a solvent molecule to occupy. We show that these interstitial high dielectric regions are of significant magnitude in globular proteins, that they artificially increase solvation energies, and that they distort the free energy surface of nonbonded interactions. These results suggest that implicit solvent dielectric functions must exclude interstitial high dielectric regions in order to yield physically meaningful results.
泊松-玻尔兹曼和广义玻恩隐式溶剂模型最近取得了许多进展,这些进展使用了以原子为中心的多项式或高斯函数来定义分隔低介电区和高介电区的边界。与李和理查兹分子表面不同,以原子为中心的表面会导致原子间缝隙和高介电的埋藏口袋,这些对于溶剂分子来说太小而无法占据。我们表明,这些间隙高介电区在球状蛋白质中具有相当大的量级,它们会人为增加溶剂化能,并扭曲非键相互作用的自由能表面。这些结果表明,隐式溶剂介电函数必须排除间隙高介电区,以便产生具有物理意义的结果。