Meulendijks G H, Sonderkamp T, Dubois J E, Nielen R J, Kremers J A, Buck H M
Department of Organic Chemistry, Eindhoven University of Technology, The Netherlands.
Biochim Biophys Acta. 1989 Mar 13;979(3):321-30. doi: 10.1016/0005-2736(89)90252-6.
With AMBER (assisted model building with energy refinement) molecular modelling techniques, the interactions between lipids which differ in the type of chain linkage (e.g., ether or ester) and gramicidin were approximated. It was found, theoretically, that replacement of the ester function in dipalmitoylphosphatidylcholine (DPPC) by an ether moiety induces a shift in the rotameric distribution of the Trp-15 side-chain in gramicidin A. Concomitantly, the channel entrance is contracted by approx. 0.4 A. The perturbation can be related to the strong hydrogen-bond formed between the lipid carbonyl group and the indole proton of the Trp-15 residue of gramicidin. In the ether lipid-gramicidin assembly a weaker H-bond is formed between Trp-15 and the phosphate moiety. To obtain a first indication of the influence of the strength of this H-bond on gramicidin A, a preliminary experimental study was set up. The transport properties of gramicidin A were studied using efflux measurements through vesicle walls containing ether and ester lipids, respectively. A change in the permeability of gramicidin A was found when ether lipids were added to a bilayer composed of the ester lipid dioleoylphosphatidylcholine (DOPC).
利用AMBER(基于能量优化的辅助模型构建)分子建模技术,对链连接类型(如醚键或酯键)不同的脂质与短杆菌肽之间的相互作用进行了近似模拟。从理论上发现,用醚基部分取代二棕榈酰磷脂酰胆碱(DPPC)中的酯基功能会导致短杆菌肽A中色氨酸-15侧链的旋转异构体分布发生偏移。与此同时,通道入口收缩约0.4埃。这种扰动可能与脂质羰基与短杆菌肽色氨酸-15残基的吲哚质子之间形成的强氢键有关。在醚脂质-短杆菌肽组装体中,色氨酸-15与磷酸部分之间形成较弱的氢键。为了初步了解这种氢键强度对短杆菌肽A的影响,开展了一项初步实验研究。分别通过含有醚脂质和酯脂质的囊泡壁的外流测量来研究短杆菌肽A的转运特性。当将醚脂质添加到由酯脂质二油酰磷脂酰胆碱(DOPC)组成的双层膜中时,发现短杆菌肽A的通透性发生了变化。