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含胆固醇和鞘磷脂的模型凝聚脂质单分子层:通过两种胆固醇衍生物评估的涉及有序微区的异质性

Cholesterol and Sphingomyelin-Containing Model Condensed Lipid Monolayers: Heterogeneities Involving Ordered Microdomains Assessed by Two Cholesterol Derivatives.

作者信息

Lecompte Marie-France, Gaibelet Gérald, Lebrun Chantal, Tercé François, Collet Xavier, Orlowski Stéphane

机构信息

INSERM U563, Faculté de Médecine de Rangueil, 31062 Toulouse, France.

INSERM U563, CHU Purpan, 31024 Toulouse cedex 3, France.

出版信息

Langmuir. 2015 Nov 3;31(43):11921-31. doi: 10.1021/acs.langmuir.5b02646. Epub 2015 Oct 21.

Abstract

Lipid monolayers are often considered as model membranes, but they are also the physiologic lipid part of the peripheral envelope of lipoproteins and cytosolic lipid bodies. However, their structural organization is still rather elusive, in particular when both cholesterol and sphingomyelin are present. To investigate such structural organization of hemimembranes, we measured, using alternative current voltammetry, the differential capacitance of condensed phosphatidylcholine-based monolayers as a function of applied potential, which is sensitive to their lipid composition and molecular arrangement. Especially, monolayers containing both sphingomyelin and cholesterol, at 15% w/w, presented specific characteristics of the differential capacitance versus potential curves recorded, which was indicative of specific interactions between these two lipid components. We then compared the behavior of two cholesterol derivatives (at 15% w/w), 21-methylpyrenyl-cholesterol (Pyr-met-Chol) and 22-nitrobenzoxadiazole-cholesterol (NBD-Chol), with that of cholesterol when present in model monolayers. Indeed, these two probes were chosen because of previous findings reporting opposite behaviors within bilayer membranes regarding their interaction with ordered lipids, with only Pyr-met-Chol mimicking cholesterol well. Remarkably, in monolayers containing sphingomyelin or not, Pyr-met-Chol and NBD-Chol presented contrasting behaviors, and Pyr-met-Chol mimicked cholesterol only in the presence of sphingomyelin. These two observations (i.e., optimal amounts of sphingomyelin and cholesterol, and the ability to discriminate between Pyr-met-Chol and NBD-Chol) can be interpreted by the existence of heterogeneities including ordered patches in sphingomyelin- and cholesterol-containing monolayers. Since such monolayer lipid arrangement shares some properties with the raft-type lipid microdomains well-described in sphingomyelin- and cholesterol-containing bilayer membranes, our data thus strongly suggest the existence of compact and ordered microdomains in model lipid monolayers.

摘要

脂质单分子层通常被视为模型膜,但它们也是脂蛋白外周包膜和胞质脂质体的生理脂质部分。然而,它们的结构组织仍然相当难以捉摸,特别是当胆固醇和鞘磷脂都存在时。为了研究这种半膜的结构组织,我们使用交流伏安法测量了基于凝聚磷脂酰胆碱的单分子层的微分电容作为外加电势的函数,该函数对其脂质组成和分子排列敏感。特别是,含有15% 重量/重量的鞘磷脂和胆固醇的单分子层呈现出所记录的微分电容与电势曲线的特定特征,这表明这两种脂质成分之间存在特定相互作用。然后,我们比较了两种胆固醇衍生物(15% 重量/重量),21-甲基芘基胆固醇(Pyr-met-Chol)和22-硝基苯并恶二唑胆固醇(NBD-Chol)与模型单分子层中存在的胆固醇的行为。实际上,选择这两种探针是因为先前的研究结果表明,在双层膜中它们与有序脂质的相互作用表现出相反的行为,只有Pyr-met-Chol能很好地模拟胆固醇。值得注意的是,在含有或不含有鞘磷脂的单分子层中,Pyr-met-Chol和NBD-Chol呈现出对比行为,并且Pyr-met-Chol仅在存在鞘磷脂时才模拟胆固醇。这两个观察结果(即鞘磷脂和胆固醇的最佳含量,以及区分Pyr-met-Chol和NBD-Chol的能力)可以通过在含有鞘磷脂和胆固醇的单分子层中存在包括有序斑块在内的异质性来解释。由于这种单分子层脂质排列与在含有鞘磷脂和胆固醇的双层膜中描述得很好的筏型脂质微区具有一些共同特性,因此我们的数据强烈表明在模型脂质单分子层中存在紧密且有序的微区。

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