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Phase Behavior of Lipid Monolayers Containing DPPC and Cholesterol Analogs

机译:含DPPC和胆固醇类似物的脂质单分子膜的相行为

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摘要

We investigate the miscibility phase behavior of lipid monolayers containing a wide variety of sterols. Six of the sterols satisfy a definition from an earlier study of “membrane-active sterols” in bilayers (cholesterol, epicholesterol, lathosterol, dihydrocholesterol, ergosterol, and desmosterol), and six do not (25-hydroxycholesterol, lanosterol, androstenolone, coprostanol, cholestane, and cholestenone). We find that monolayers containing dipalmitoyl phosphatidylcholine mixed with membrane-active sterols generally produce phase diagrams containing two distinct regions of immiscible liquid phases, whereas those with membrane-inactive sterols generally do not. This observation establishes a correlation between lipid monolayers and bilayers. It also demonstrates that the ability to form two regions of immiscibility in monolayers is not one of the biophysical attributes that explains cholesterol's predominance in animal cell membranes. Furthermore, we find unusual phase behavior for dipalmitoyl phosphatidylcholine monolayers containing 25-hydroxycholesterol, which produce both an upper and a lower miscibility transition. The lower transition correlates with a sharp change of slope in the pressure-area isotherm.
机译:我们调查了包含多种固醇的脂质单层的可混溶相行为。六种固醇满足较早的双层“膜活性固醇”研究(胆固醇,表胆固醇,谷甾醇,二氢胆固醇,麦角固醇和去氢甾醇)的定义,而六种不满足(25-羟基胆固醇,羊毛甾醇,雄甾烯酮,香豆素,胆甾醇和胆甾酮)。我们发现,含有二棕榈酰磷脂酰胆碱与膜活性甾醇混合的单分子层通常会产生相图,该相图包含两个互不相溶的液相区域,而那些具有膜惰性固醇的分子通常不会。该观察结果在脂质单层和双层之间建立了相关性。它还证明了在单层中形成两个不混溶区域的能力不是解释胆固醇在动物细胞膜中占主导地位的生物物理属性之一。此外,我们发现包含25-羟基胆固醇的二棕榈酰磷脂酰胆碱单层的不寻常相行为,会同时产生较高和较低的混溶性转变。较低的过渡与压力区域等温线中斜率的急剧变化相关。

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