Gibas C J, Subramaniam S
Department of Molecular and Integrative Physiology, University of Illinois at Urbana-Champaign 61801, USA.
Biophys J. 1996 Jul;71(1):138-47. doi: 10.1016/S0006-3495(96)79209-3.
Continuum methods for calculation of protein electrostatics treat buried and ordered water molecules by one of two approximations; either the dielectric constant of regions containing ordered water molecules is equal to the bulk solvent dielectric constant, or it is equal to the protein dielectric constant though no fixed atoms are used to represent water molecules. A method for calculating the titration behavior of individual residues in proteins has been tested on models of hen egg white lysozyme containing various numbers of explicit water molecules. Water molecules were included based on hydrogen bonding, solvent accessibility, and/or proximity to titrating groups in the protein. Inclusion of water molecules significantly alters the calculated titration behavior of individual titrating sites, shifting calculated pKa values by up to 0.5 pH unit. Our results suggest that approximately one water molecule within hydrogen-bonding distance of each charged group should be included in protein electrostatics calculations.
用于计算蛋白质静电作用的连续介质方法通过两种近似方法之一来处理埋藏和有序的水分子;要么包含有序水分子区域的介电常数等于本体溶剂介电常数,要么等于蛋白质介电常数,尽管没有使用固定原子来表示水分子。一种计算蛋白质中单个残基滴定行为的方法已在含有不同数量显式水分子的鸡蛋清溶菌酶模型上进行了测试。基于氢键、溶剂可及性和/或蛋白质中滴定基团的接近程度纳入水分子。水分子的纳入显著改变了单个滴定位点的计算滴定行为,使计算的pKa值最多偏移0.5个pH单位。我们的结果表明,在蛋白质静电计算中应纳入每个带电基团氢键距离内大约一个水分子。