Department of Biochemistry and Molecular Genetics, University of Colorado Denver, School of Medicine, Aurora, CO 80045, USA.
Biopolymers. 2009;92(6):573-95. doi: 10.1002/bip.21316.
An accurate determination of the intrinsic hydrophilicity/hydrophobicity of amino acid side-chains in peptides and proteins is fundamental in understanding many area of research, including protein folding and stability, peptide and protein function, protein-protein interactions and peptide/protein oligomerization, as well as the design of protocols for purification and characterization of peptides and proteins. Our definition of intrinsic hydrophilicity/hydrophobicity of side-chains is the maximum possible hydrophilicity/hydrophobicity of side-chains in the absence of any nearest-neighbor effects and/or any conformational effects of the polypeptide chain that prevent full expression of side-chain hydrophilicity/hydrophobicity. In this review, we have compared an experimentally derived intrinsic side-chain hydrophilicity/hydrophobicity scale generated from RP-HPLC retention behavior of de novo designed synthetic model peptides at pH 2 and pH 7 with other RP-HPLC-derived scales, as well as scales generated from classic experimental and calculation-based methods of octanol/water partitioning of Nalpha-acetyl-amino-acid amides or free energy of transfer of free amino acids. Generally poor correlation was found with previous RP-HPLC-derived scales, likely due to the random nature of the peptide mixtures in terms of varying peptide size, conformation and frequency of particular amino acids. In addition, generally poor correlation with the classical approaches served to underline the importance of the presence of a polypeptide backbone when generating intrinsic values. We have shown that the intrinsic scale determined here is in full agreement with the structural characteristics of amino acid side-chains.
准确确定肽和蛋白质中氨基酸侧链的固有亲水性/疏水性对于理解许多研究领域至关重要,包括蛋白质折叠和稳定性、肽和蛋白质功能、蛋白质-蛋白质相互作用和肽/蛋白质寡聚化,以及肽和蛋白质的纯化和表征方案的设计。我们对侧链固有亲水性/疏水性的定义是在没有任何最近邻效应和/或多肽链的任何构象效应的情况下侧链的最大可能亲水性/疏水性,这些效应阻止了侧链亲水性/疏水性的完全表达。在这篇综述中,我们将在 pH 2 和 pH 7 下通过从头设计的合成模型肽的反相高效液相色谱(RP-HPLC)保留行为实验得出的固有侧链亲水性/疏水性尺度与其他 RP-HPLC 衍生尺度以及从经典实验和计算方法得出的尺度进行比较。 Nα-乙酰-氨基酸酰胺的辛醇/水分配或游离氨基酸的自由能转移。与先前的 RP-HPLC 衍生尺度通常相关性较差,这可能是由于肽混合物在肽大小、构象和特定氨基酸频率方面的随机性质所致。此外,与经典方法的普遍较差相关性突出了在生成固有值时存在多肽主链的重要性。我们已经表明,这里确定的固有尺度与氨基酸侧链的结构特征完全一致。