Fornili S L, Vercauteren D P, Clementi E
Biochim Biophys Acta. 1984 Apr 11;771(2):151-64. doi: 10.1016/0005-2736(84)90527-3.
The interaction energy and the structure of water molecules either inside the Gramicidin A transmembrane channel or at its two extremities is examined with the use of iso-energy maps and Monte Carlo simulations. The shape of the channel as experienced by water is analyzed in detail. Variations in the hydration structure due to the presence of a sodium ion placed at several positions along the channel are simulated, analyzed and discussed. Preliminary data on Li+ and K+ interacting with Gramicidin A and the system of water molecules are reported. The Gramicidin A atomic coordinates have been taken from Urry's recent papers (Urry, D.W. (1971) Proc. Natl. Acad. Sci. U.S.A. 68, 672-676 and Urry, D.W., Trapane, T.L. and Prasad, K.U. (1982) Int. J. Quant. Chem. Quant. Biol. Symp. 9, 31-40).
利用等能图和蒙特卡罗模拟,研究了短杆菌肽A跨膜通道内部或其两端水分子的相互作用能及结构。详细分析了水所经历的通道形状。模拟、分析和讨论了由于沿通道几个位置放置钠离子而导致的水合结构变化。报告了关于Li+和K+与短杆菌肽A及水分子体系相互作用的初步数据。短杆菌肽A的原子坐标取自厄里最近的论文(厄里,D.W.(1971年)《美国国家科学院院刊》68,672 - 676;厄里,D.W.、特拉帕内,T.L.和普拉萨德,K.U.(1982年)《国际量子化学量子生物学专题讨论会》9,31 - 40)。