König S, Bayerl T M, Coddens G, Richter D, Sackmann E
Physik-Department E22, TU München, Garching, Germany.
Biophys J. 1995 May;68(5):1871-80. doi: 10.1016/S0006-3495(95)80364-4.
Incoherent quasi-elastic neutron scattering is applied to study the local diffusion and chain dynamics of L-alpha-diplamiotylphosphatidylcholine molecules in oriented model membranes. Different motions are distinguished by changing the hydration of the multilayers as well as by measuring below and above the gel-to-liquid crystalline phase transition. The time range of the utilized time-of-flight spectrometer permits to observe two types of motion to be observed more closely: chain defect motions and the local diffusion of the whole molecule in its solvation cage. Oriented lipid membranes are a useful system for the observation of chain defects, as they can be macroscopically oriented, in contrast to most polymers. As a representative model for a chain defect a kink is chosen and the corresponding scattering functions are derived. The kink motion can explain the entire dynamics seen in the gel phase, and the lifetime of such a defect was found to be 10-15 ps, in good agreement with theoretical predictions. On the other hand the dynamics in the liquid crystalline phase cannot be explained even by a superposition of several kinks and thus requires the consideration of an additional motion: the local diffusion of the molecule in its solvation cage. The size of the solvation cage is increasing with multilayer hydration and reduced temperature. Particularly interesting in view of recent discussions about the origin of the short-range repulsive forces between membranes is the experimental finding of an out-of-plane motion with an amplitude of 1-1.5 A, which cannot be explained by the undulation of the whole membrane.
非相干准弹性中子散射被用于研究L-α-二棕榈酰磷脂酰胆碱分子在取向模型膜中的局部扩散和链动力学。通过改变多层膜的水合作用以及在凝胶-液晶相转变温度上下进行测量来区分不同的运动。所使用的飞行时间光谱仪的时间范围允许更密切地观察两种类型的运动:链缺陷运动和整个分子在其溶剂化笼中的局部扩散。与大多数聚合物不同,取向脂质膜是观察链缺陷的有用体系,因为它们可以宏观取向。选择扭结作为链缺陷的代表性模型并推导相应的散射函数。扭结运动可以解释在凝胶相中看到的整个动力学,并且发现这种缺陷的寿命为10 - 15皮秒,与理论预测吻合良好。另一方面,即使通过几个扭结的叠加也无法解释液晶相中的动力学,因此需要考虑另一种运动:分子在其溶剂化笼中的局部扩散。溶剂化笼的大小随着多层膜的水合作用和温度降低而增加。鉴于最近关于膜之间短程排斥力起源的讨论,特别有趣的是实验发现了一种面外运动,其振幅为1 - 1.5埃,这无法用整个膜的波动来解释。