Lakshmanan Muthuselvi, Dhathathreyan Aruna
Chemical Lab., CLRI, Adyar, Chennai 600 020, India.
Biochim Biophys Acta. 2007 Jan;1774(1):138-45. doi: 10.1016/j.bbapap.2006.10.006. Epub 2006 Oct 18.
The influence of different amino acid residues on properties of a protein surface is of great interest and importance. Hydrodynamically coupled water in the amino acids has the potential to be used as a tool to study surface properties of proteins. The contribution of this coupled water fraction in design of a hydropathy scale in surface adsorbed amino acid films on solid using quartz crystal microbalance is presented in this work. This scale compares well with the hydropathy scale of Guy reported in the literature and can be correlated with the solid/liquid interfacial tension and work of adhesion of the adsorbed amino acid films. Using Graphical Representation and Analysis of Surface Properties (GRASP) the free energy of transfer from Octanol to water for the amino acids has been estimated and shows approximately an inverse relationship with the coupled water fraction. This scale has been applied in a benchmark test for a native Laminin peptide YIGSR and its mutated sequences (with mutations carried out at 'Y and 'R' positions). The experimentally measured coupled water fractions seem to compare well with that obtained from the present scale assuming the total solvent fraction to be a linear function of the amino acids in the sequence. A survey of the protein data bank showed that sets of sequences based on this scale occur in membrane insertion domain or in trans-membrane proteins suggesting that the scale is suitable to study structure-function correlation in proteins.
不同氨基酸残基对蛋白质表面性质的影响极具研究价值和重要性。氨基酸中流体动力学耦合水有潜力用作研究蛋白质表面性质的工具。本文介绍了利用石英晶体微天平在设计固体表面吸附氨基酸膜的亲水性标度时,这种耦合水部分的贡献。该标度与文献中报道的盖伊亲水性标度比较吻合,并且可以与吸附氨基酸膜的固/液界面张力和粘附功相关联。使用表面性质的图形表示与分析(GRASP)方法估算了氨基酸从辛醇转移到水的自由能,结果表明其与耦合水部分大致呈反比关系。该标度已应用于天然层粘连蛋白肽YIGSR及其突变序列(在“Y”和“R”位置进行突变)的基准测试。假设总溶剂部分是序列中氨基酸的线性函数,实验测得的耦合水部分似乎与从本标度获得的结果比较吻合。对蛋白质数据库的一项调查表明,基于该标度的序列集出现在膜插入结构域或跨膜蛋白中,这表明该标度适用于研究蛋白质中的结构-功能相关性。