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Anisotropic motion of cholesterol in oriented DPPC bilayers studied by quasielastic neutron scattering: the liquid-ordered phase.

机译:通过准弹性中子散射研究的定向DPPC双层中胆固醇的各向异性运动:液相有序相。

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摘要

Quasielastic neutron scattering (QENS) at two energy resolutions (1 and 14 microeV) was employed to study high-frequency cholesterol motion in the liquid ordered phase (lo-phase) of oriented multilayers of dipalmitoylphosphatidylcholine at three temperatures: T = 20 degrees C, T = 36 degrees C, and T = 50 degrees C. We studied two orientations of the bilayer stack with respect to the incident neutron beam. This and the two energy resolutions for each orientation allowed us to determine the cholesterol dynamics parallel to the normal of the membrane stack and in the plane of the membrane separately at two different time scales in the GHz range. We find a surprisingly high, model-independent motional anisotropy of cholesterol within the bilayer. The data analysis using explicit models of molecular motion suggests a superposition of two motions of cholesterol: an out-of-plane diffusion of the molecule parallel to the bilayer normal combined with a locally confined motion within the bilayer plane. The rather high amplitude of the out-of-plane diffusion observed at higher temperatures (T >/= 36 degrees C) strongly suggests that cholesterol can move between the opposite leaflets of the bilayer while it remains predominantly confined within its host monolayer at lower temperatures (T = 20 degrees C). The locally confined in-plane cholesterol motion is dominated by discrete, large-angle rotational jumps of the steroid body rather than a quasicontinous rotational diffusion by small angle jumps. We observe a significant increase of the rotational jump rate between T = 20 degrees C and T = 36 degrees C, whereas a further temperature increase to T = 50 degrees C leaves this rate essentially unchanged.
机译:利用两种能量分辨率(1和14 microeV)的准弹性中子散射(QENS)研究了在两个温度下T二棕榈酰磷脂酰胆碱取向多层体的液相有序相(lo-phase)中的高频胆固醇运动:T = 20°C, T = 36摄氏度,T = 50摄氏度。我们研究了双层堆叠相对于入射中子束的两个方向。每个方向的该能量分辨率和两个能量分辨率使我们能够在GHz范围内的两个不同时标上分别确定平行于膜堆叠法线并在膜平面内的胆固醇动力学。我们发现双层中胆固醇异常高,与模型无关的运动各向异性。使用分子运动的显式模型进行的数据分析表明胆固醇的两种运动是叠加的:平行于双层法线的分子的平面外扩散与双层平面内的局部受限运动相结合。在较高温度(T> / = 36摄氏度)下观察到的面外扩散幅度相当大,这强烈表明胆固醇可以在双层的相对小叶之间移动,而胆固醇则主要限制在较低温度下的宿主单层内(T = 20摄氏度)。局部受限的平面内胆固醇运动主要由类固醇体的离散,大角度旋转跳跃控制,而不是由小角度跳跃的准连续旋转扩散控制。我们观察到T = 20摄氏度和T = 36摄氏度之间的旋转跳跃率显着增加,而温度进一步升高到T = 50摄氏度时,该跳跃率基本保持不变。

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