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关于脂质双层中的二维被动随机游走及生物膜中的流体通道

On two-dimensional passive random walk in lipid bilayers and fluid pathways in biomembranes.

作者信息

Galla H J, Hartmann W, Theilen U, Sackmann E

出版信息

J Membr Biol. 1979 Jul 31;48(3):215-36. doi: 10.1007/BF01872892.

Abstract

The lateral mobility of pyrene, pyrene decanoic acid, and 1-palmitoyl-2-pyrene decanoyl-phosphatidyl choline (pyrene lecithin) in lipid bilayers is determined by the excimer formation technique. This method is applied to vesicles of lecithins differing in chain length and in the degree of saturation of the hydrocarbon chains. These values are compared with results in cephalins of different chain length and in dipalmitoyl phosphatidic acid at variable pH. The influence of cholesterol is investigated. The results are analyzed in terms of the Montroll model of two-dimensional random walk. The jump frequency of the probe molecule within the lipid lattice is obtained. The advantage of this measure of transport in lipid layers is that it does not involve lipid lattice parameters. The main results of the present work are: (i) The lateral mobility of a given solute molecule in lamellae of saturated lecithins is independent of hydrocarbon chain length and rather a universal function of temperature. (ii) In unsaturated dioleyl lecithin the amphiphatic molecules have lateral mobilities of the same size as in saturated lipids. The jump frequency of pyrene, however, is by a factor of two larger in the unsaturated lecithin. (iii) The jump frequencies in phosphatidyl ethanolamines are about equal to those in lecithins. (iv) In phosphatidic acid layers the hopping frequencies depend on the charges of the head groups of both the lipids and the probes. (v) Cholesterol strongly reduces the jump frequency in fluid layers. (vi) The lateral mobility in biological membranes is comparable to that in artificial lipid bilayers. The experimental results are discussed in terms of the free volume model of diffusion in fluids. Good agreement with the predictions made from this model is found. A striking result is the observation of a tilt in dioleyl-lecithin bilayer membranes from the hopping frequencies of pyrene and pyrene lecithin. A tilt angle of phi = 17 degrees is estimated.

摘要

通过准分子形成技术测定芘、癸酸芘和1 - 棕榈酰 - 2 - 芘癸酰磷脂酰胆碱(芘卵磷脂)在脂质双层中的横向流动性。该方法应用于烃链长度和饱和度不同的卵磷脂囊泡。将这些值与不同链长的脑磷脂以及不同pH值下的二棕榈酰磷脂酸的结果进行比较。研究了胆固醇的影响。根据二维随机游走的蒙特罗模型对结果进行分析。得出了探针分子在脂质晶格中的跳跃频率。这种脂质层中传输测量方法的优点是它不涉及脂质晶格参数。本研究的主要结果如下:(i)给定溶质分子在饱和卵磷脂片层中的横向流动性与烃链长度无关,而是温度的通用函数。(ii)在不饱和二油酰卵磷脂中,两亲分子的横向流动性与饱和脂质中的相同。然而,芘在不饱和卵磷脂中的跳跃频率大两倍。(iii)磷脂酰乙醇胺中的跳跃频率与卵磷脂中的大致相等。(iv)在磷脂酸层中,跳跃频率取决于脂质和探针头部基团的电荷。(v)胆固醇强烈降低流体层中的跳跃频率。(vi)生物膜中的横向流动性与人工脂质双层中的相当。根据流体扩散的自由体积模型对实验结果进行了讨论。发现与该模型的预测结果吻合良好。一个显著的结果是从芘和芘卵磷脂的跳跃频率观察到二油酰卵磷脂双层膜中的倾斜。估计倾斜角为φ = 17度。

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