Gilson M K, Rashin A, Fine R, Honig B
J Mol Biol. 1985 Aug 5;184(3):503-16. doi: 10.1016/0022-2836(85)90297-9.
In this paper we present a classical treatment of electrostatic interactions in proteins. The protein is treated as a region of low dielectric constant with spherical charges embedded within it, surrounded by an aqueous solvent of high dielectric constant, which may contain a simple electrolyte. The complete analysis includes the effects of solvent screening, polarization forces, and self energies, which are related to solvation energies. Formulae, and sample calculations of forces and energies, are given for the special case of a spherical protein. Our analysis and model calculations point out that any consistent treatment of electrostatic interactions in proteins should account for the following. Solvent polarization is an important factor in the calculation of pairwise electrostatic interactions. Solvent polarization substantially affects both electrostatic energies and forces acting upon charges. No simple expression for the effective dielectric constant, Deff, can generally be valid, since Deff is a sensitive function of position. Solvent screening of pairwise interactions involving dipolar groups is less effective than the screening of charges. In fact for many interactions involving dipoles, solvent screening can be essentially ignored. The self energy of charges makes a large contribution to the total electrostatic energy of a protein. This must be compensated by specific interactions with other groups in the protein. Strategies for applying our analysis to proteins whose structures are known are discussed.
在本文中,我们介绍了蛋白质中静电相互作用的经典处理方法。蛋白质被视为一个低介电常数区域,内部嵌入球形电荷,周围是高介电常数的水性溶剂,该溶剂可能含有简单电解质。完整的分析包括溶剂屏蔽、极化力和自能的影响,这些与溶剂化能相关。针对球形蛋白质的特殊情况给出了公式以及力和能量的示例计算。我们的分析和模型计算指出,对蛋白质中静电相互作用的任何一致处理都应考虑以下几点。溶剂极化是计算成对静电相互作用时的一个重要因素。溶剂极化会显著影响静电能以及作用于电荷的力。一般来说,有效介电常数Deff没有简单的表达式能普遍有效,因为Deff是位置的敏感函数。涉及偶极基团的成对相互作用的溶剂屏蔽比对电荷的屏蔽效果差。实际上,对于许多涉及偶极的相互作用,溶剂屏蔽基本上可以忽略。电荷的自能对蛋白质的总静电能有很大贡献。这必须通过与蛋白质中其他基团的特定相互作用来补偿。讨论了将我们的分析应用于已知结构蛋白质的策略。