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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Functional role of water in membranes updated: A tribute to Trauble
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Functional role of water in membranes updated: A tribute to Trauble

机译:水在膜中的功能作用已更新:致敬

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摘要

The classical view of a cell membrane is as a hydrophobic slab in which only nonpolar solutes can dissolve and permeate. However, water-soluble non-electrolytes such as glycerol, erythritol, urea and others can permeate lipid membranes in the liquid crystalline state. Moreover, recently polar amino acid's penetration has been explained by means of molecular dynamics in which appearance of water pockets is postulated. According to Trauble (1971), water diffuses across the lipid membranes by occupying holes formed in the lipid matrix due to fluctuations of the acyl chain trans gauche isomers. These holes, named "kinks" have the molecular dimension of CH2 vacancies. The condensation of kinks may form aqueous spaces into which molecular species of the size of low molecular weight can dissolve. This molecular view can explain permeability properties considering that water may be distributed along the hydrocarbon chains in the lipid matrix. The purpose of this review is to consolidate the mechanism anticipated by Trauble by discussing recent data in literature that directly correlates the molecular state of methylene groups of the lipids with the state of water in each of them. In addition, the structural properties of water near the lipid residues can be related with the water activity triggering kink formation by changes in the head group conformation that induces the propagation along the acyl chains and hence to the diffusion of water. (C) 2015 Elsevier B.V. All rights reserved.
机译:细胞膜的经典观点是作为一种疏水性平板,其中只有非极性溶质才能溶解和渗透。然而,水溶性非电解质,例如甘油,赤藓糖醇,尿素和其他可以在液晶状态下渗透脂质膜。此外,最近已经通过分子动力学解释了极性氨基酸的渗透,其中假定水囊的出现。根据Trauble(1971)的研究,由于酰基链反式gauche异构体的波动,水占据了脂质基质中形成的孔,从而使水扩散穿过脂质膜。这些称为“扭结”的孔具有CH2空位的分子尺寸。纽结的凝结可形成水空间,低分子量大小的分子物质可溶解在其中。考虑到水可能沿着脂质基质中的烃链分布,这种分子观点可以解释渗透性。这篇综述的目的是通过讨论文献中的最新数据来巩固Trauble预期的机制,这些最新数据直接将脂质中亚甲基的分子状态与每个脂质中的水状态相关联。此外,脂质残基附近的水的结构性质可能与水活性有关,该水活性通过引发沿酰基链传播并因此与水扩散的头部基团构象的变化而触发扭结形成。 (C)2015 Elsevier B.V.保留所有权利。

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