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胆固醇对高度多不饱和磷脂双层中分子排列和动力学的影响。

Effect of cholesterol on molecular order and dynamics in highly polyunsaturated phospholipid bilayers.

作者信息

Mitchell D C, Litman B J

机构信息

Section of Fluorescence Studies, Laboratory of Membrane Biophysics and Biochemistry, National Institute on Alcohol Abuse and Alcoholism, National Institutes of Health, Rockville, Maryland 20852 USA.

出版信息

Biophys J. 1998 Aug;75(2):896-908. doi: 10.1016/S0006-3495(98)77578-2.

Abstract

The effect of cholesterol on phospholipid acyl chain packing in bilayers consisting of highly unsaturated acyl chains in the liquid crystalline phase was examined for a series of symmetrically and asymmetrically substituted phosphatidylcholines (PCs). The time-resolved fluorescence emission and decay of fluorescence anisotropy of 1,6-diphenyl-1,3,5-hexatriene (DPH) was used to characterize equilibrium and dynamic structural properties of bilayers containing 30 mol % cholesterol. The bilayers were composed of symmetrically substituted PCs with acyl chains of 14:0, 18:1n9, 20:4n6, or 22:6n3, containing 0, 1, 4, or 6 double bonds, respectively, and mixed-chain PCs with a saturated 16:0 sn-1 chain and 1, 4, or 6 double bonds in the sn-2 chain. DPH excited-state lifetime was fit to a Lorentzian lifetime distribution, the center of which was increased 1-2 ns by 30 mol % cholesterol relative to the cholesterol-free bilayers. Lifetime distributions were dramatically narrowed by the addition of cholesterol in all bilayers except the two consisting of dipolyunsaturated PCs. DPH anisotropy decay was interpreted in terms of the Brownian rotational diffusion model. The effect of cholesterol on both the perpendicular diffusion coefficient D perpendicular and the orientational distribution function f(theta) varied with acyl chain unsaturation. In all bilayers, except the two dipolyunsaturated PCs, 30 mol % cholesterol dramatically slowed DPH rotational motion and restricted DPH orientational freedom. The effect of cholesterol was especially diminished in di-22:6n3 PC, suggesting that this phospholipid may be particularly effective at promoting lateral domains, which are cholesterol-rich and unsaturation-rich, respectively. The results are discussed in terms of a model for lipid packing in membranes containing cholesterol and PCs with highly unsaturated acyl chains.

摘要

对于一系列对称和不对称取代的磷脂酰胆碱(PCs),研究了胆固醇对液晶相中由高度不饱和酰基链组成的双层膜中磷脂酰基链堆积的影响。使用1,6 - 二苯基 - 1,3,5 - 己三烯(DPH)的时间分辨荧光发射和荧光各向异性衰减来表征含有30 mol%胆固醇的双层膜的平衡和动态结构性质。双层膜由对称取代的PCs组成,其酰基链分别为14:0、18:1n9、20:4n6或22:6n3,分别含有0、1、4或6个双键,以及混合链PCs,其sn - 1链为饱和的16:0,sn - 2链含有1、4或6个双键。DPH激发态寿命拟合为洛伦兹寿命分布,相对于不含胆固醇的双层膜,其中心因30 mol%胆固醇而增加了1 - 2 ns。除了由二多不饱和PCs组成的两个双层膜外,在所有双层膜中添加胆固醇都会使寿命分布显著变窄。DPH各向异性衰减根据布朗旋转扩散模型进行解释。胆固醇对垂直扩散系数D垂直和取向分布函数f(θ)的影响随酰基链不饱和度而变化。在所有双层膜中,除了两个二多不饱和PCs外,30 mol%胆固醇显著减缓了DPH的旋转运动并限制了DPH的取向自由度。胆固醇在二 - 22:6n3 PC中的作用尤其减弱,这表明这种磷脂在促进分别富含胆固醇和富含不饱和度的侧向结构域方面可能特别有效。根据包含胆固醇和具有高度不饱和酰基链的PCs的膜中脂质堆积的模型对结果进行了讨论。

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