Sun S, Parthasarathy R
Department of Pharmaceutical Chemistry, University of California-San Francisco 94118.
Biophys J. 1994 Jun;66(6):2092-106. doi: 10.1016/S0006-3495(94)81004-5.
If it is assumed that the primary sequence determines the three-dimensional folded structure of a protein, then the regular folding patterns, such as alpha-helix, beta-sheet, and other ordered patterns in the three-dimensional structure must correspond to the periodic distribution of the physical properties of the amino acids along the primary sequence. An AutoRegressive Moving Average (ARMA) model method of spectral analysis is applied to analyze protein sequences represented by the hydrophobicity of their amino acids. The results for several membrane proteins of known structures indicate that the periodic distribution of hydrophobicity of the primary sequence is closely related to the regular folding patterns in a protein's three-dimensional structure. We also applied the method to the transmembrane regions of acetylcholine receptor alpha subunit and Shaker potassium channel for which no atomic resolution structure is available. This work is an extension of our analysis of globular proteins by a similar method.
如果假设蛋白质的一级序列决定其三维折叠结构,那么三维结构中的规则折叠模式,如α螺旋、β折叠片层以及其他有序模式,必定与氨基酸物理性质沿一级序列的周期性分布相对应。应用自回归移动平均(ARMA)模型的频谱分析方法,来分析以氨基酸疏水性表示的蛋白质序列。几种已知结构的膜蛋白的分析结果表明,一级序列疏水性的周期性分布与蛋白质三维结构中的规则折叠模式密切相关。我们还将该方法应用于乙酰胆碱受体α亚基和Shaker钾通道的跨膜区域,这两种蛋白尚无原子分辨率结构。这项工作是我们用类似方法对球状蛋白分析的扩展。