Department of Chemistry, Iona College , 715 North Avenue, New Rochelle, New York 10801, United States.
Langmuir. 2018 Feb 6;34(5):2147-2157. doi: 10.1021/acs.langmuir.7b03590. Epub 2018 Jan 23.
Cholesterol is an important component of total lipid in mammalian cellular membranes; hence, the knowledge of its association with lipid bilayer membranes will be essential to understanding membrane structure and function. A droplet interface bilayer (DIB) provides a convenient and reliable platform through which values for permeability coefficient and activation energy of water transport across the membrane can be extracted. In this study, we investigated the effect of acyl chain structure in amphiphilic monoglycerides on the permeability of water across DIB membranes composed of cholesterol and these monoglycerides, where the acyl chain length, number of double bonds, and the position of double bond are varied systematically along the acyl chains. To elucidate the role of cholesterol in these membranes, we investigated its influence on water permeability and associated activation energies at two different cholesterol concentrations. Our systematic studies show dramatic sensitivity and selectivity of specific interaction of cholesterol with the monoglyceride bilayer having structural variations in acyl chain compositions. Our findings allow us to delineate the exquisite interplay between membrane properties and structural components and understand the balanced contribution of each.
胆固醇是哺乳动物细胞膜总脂质的重要组成部分;因此,了解它与脂质双层膜的关系对于理解膜结构和功能至关重要。液滴界面双层(DIB)提供了一个方便可靠的平台,可以从中提取跨膜水渗透系数和水传输活化能的值。在这项研究中,我们研究了亲脂性单甘油脂中酰链结构对胆固醇和这些单甘油脂组成的 DIB 膜中水渗透率的影响,其中酰链长度、双键数量和双键位置沿酰链系统变化。为了阐明胆固醇在这些膜中的作用,我们研究了胆固醇在两个不同胆固醇浓度下对水渗透性和相关活化能的影响。我们的系统研究表明,胆固醇与具有酰链组成结构变化的单甘油脂双层的特异性相互作用具有显著的敏感性和选择性。我们的发现使我们能够描绘膜性质和结构成分之间的精致相互作用,并了解每个成分的平衡贡献。