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Thermodynamic and mechanical properties of model mitochondrial membranes

机译:线粒体模型膜的热力学和力学性能

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摘要

Cardiolipin is a unique four-tailed, doubly negatively charged lipid found predominantly within the inner mitochondrial membrane, and is thought to be influential in determining membrane potential and permeability. To determine the role of cardiolipin in modulating the properties of membranes, this study investigates the thermodynamics of mixed cardiolipin and phosphatidylcholine monolayers and bilayers. Gibbs free energy analysis of mixed monolayers indicates that at low cardiolipin concentrations (5-10 mol%), there is a positive deviation from ideality on a pure water subphase, while at physiological salt concentrations a negative deviation from ideality is observed. The mechanical properties of bilayers containing cardiolipin were measured using micropipette aspiration. Both apparent area compressibility modulus, as well as lysis tension, decrease with increasing cardiolipin content. This destabilization indicates a decrease in the cohesive energy of the membrane. This interplay between interactions of lipids in monolayers and bilayers, suggests cardiolipin plays a dual role in modulating membrane properties. Cardiolipin enhances lateral interactions between lipids within monolayer leaflets, while simultaneously decreasing the cohesive energy of membranes at physiologically relevant concentrations. Taken together, these findings correlate with the decreased permeability and creation of folds in the inner mitochondrial membrane.
机译:心磷脂是独特的四尾双负电荷脂质,主要存在于线粒体内膜内,并被认为对确定膜电位和通透性有影响。为了确定心磷脂在调节膜特性中的作用,本研究调查了心磷脂和磷脂酰胆碱混合单层和双层的热力学。混合单层的吉布斯自由能分析表明,在低心磷脂浓度(5-10 mol%)下,纯水亚相的理想值存在正偏差,而在生理盐浓度下,理想值存在负偏差。使用微量移液管吸取法测量含有心磷脂的双层的机械性能。随着心磷脂含量的增加,表观面积可压缩模量以及裂解张力均降低。这种不稳定表明膜的内聚能降低。脂质在单层和双层中相互作用的相互作用表明,心磷脂在调节膜特性中起双重作用。心磷脂增强单层小叶内脂质之间的侧向相互作用,同时降低生理相关浓度的膜的内聚能。综上所述,这些发现与线粒体内膜的渗透性降低和褶皱的产生相关。

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