Shaytan Alexey K, Shaitan Konstantin V, Khokhlov Alexei R
Physics Department, Moscow State University, Moscow 119991, Russia.
Biomacromolecules. 2009 May 11;10(5):1224-37. doi: 10.1021/bm8015169.
It is known that the distribution of amino acid residues in globular proteins between surface and interior is in certain correlation with various experimental scales based on partitioning of amino acids or their analogs between water and organic solvents. These scales are often used in various quantitative structure-activity relationship (QSAR) studies as well as for evaluation of stability of proteins. In this work we have analyzed the distribution of residues based on their solvent accessible surface area in more than 8000 protein structures. Using extensive statistical sampling, we have computed residue apparent free energies of transfer between protein interior and surface applying various criteria for classifying residues as exposed or buried. The correlation of these statistical energies with several experimental hydrophobicity scales is discussed. We propose three types of statistical apparent transfer free energy scales and show that each of these scales is in better correlation with one of the experimental hydrophobicity scales (water/vapor, water/cyclohexane, and water/octanol transfer scales). The data are interpreted through the application of theoretical considerations by Finkelstein et al. (Protein Struct. Funct. Genet. 1995, 23, 142) based on random energy model of heteropolymer globules. The deviation of apparent transfer free energies from experimental scales is discussed and analyzed. The variations of amino acid distribution in proteins with the size of protein structure is discussed and the final protein set is chosen to minimize these variations.
已知球状蛋白质中氨基酸残基在表面和内部的分布与基于氨基酸或其类似物在水和有机溶剂之间分配的各种实验尺度存在一定的相关性。这些尺度经常用于各种定量构效关系(QSAR)研究以及蛋白质稳定性评估。在这项工作中,我们基于溶剂可及表面积分析了8000多个蛋白质结构中残基的分布。通过广泛的统计抽样,我们应用各种将残基分类为暴露或埋藏的标准,计算了蛋白质内部和表面之间残基的表观转移自由能。讨论了这些统计能量与几种实验疏水性尺度的相关性。我们提出了三种类型的统计表观转移自由能尺度,并表明这些尺度中的每一种都与一种实验疏水性尺度(水/气相、水/环己烷和水/辛醇转移尺度)具有更好的相关性。通过应用Finkelstein等人(《蛋白质结构、功能与遗传学》,1995年,第23卷,第142页)基于杂聚物球状体随机能量模型的理论考量来解释这些数据。讨论并分析了表观转移自由能与实验尺度的偏差。讨论了蛋白质中氨基酸分布随蛋白质结构大小的变化,并选择最终的蛋白质集以尽量减少这些变化。