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Giant Unilamellar Vesicles Electroformed from Native Membranes and Organic Lipid Mixtures under Physiological Conditions

机译:在生理条件下由天然膜和有机脂质混合物电铸形成的巨型单层囊泡

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摘要

In recent years, giant unilamellar vesicles (GUVs) have become objects of intense scrutiny by chemists, biologists, and physicists who are interested in the many aspects of biological membranes. In particular, this “cell size” model system allows direct visualization of particular membrane-related phenomena at the level of single vesicles using fluorescence microscopy-related techniques. However, this model system lacks two relevant features with respect to biological membranes: 1), the conventional preparation of GUVs currently requires very low salt concentration, thus precluding experimentation under physiological conditions, and 2), the model system lacks membrane compositional asymmetry. Here we show for first time that GUVs can be prepared using a new protocol based on the electroformation method either from native membranes or organic lipid mixtures at physiological ionic strength. Additionally, for the GUVs composed of native membranes, we show that membrane proteins and glycosphingolipids preserve their natural orientation after electroformation. We anticipate our result to be important to revisit a vast variety of findings performed with GUVs under low- or no-salt conditions. These studies, which include results on artificial cell assembly, membrane mechanical properties, lipid domain formation, partition of membrane proteins into lipid domains, DNA-lipid interactions, and activity of interfacial enzymes, are likely to be affected by the amount of salt present in the solution.
机译:近年来,巨大的单层囊泡(GUV)已成为对生物膜的许多方面感兴趣的化学家,生物学家和物理学家进行严格审查的对象。特别地,这种“细胞大小”模型系统允许使用荧光显微镜相关技术在单个囊泡水平上直接可视化特定膜相关现象。但是,该模型系统在生物膜方面缺乏两个相关特征:1),常规的GUV制备目前所需的盐浓度非常低,因此无法在生理条件下进行实验; 2)模型系统缺乏膜组成不对称性。在这里,我们首次表明,可以使用基于电形成法的新方案,以生理离子强度从天然膜或有机脂质混合物中制备GUV。此外,对于由天然膜组成的GUV,我们显示出膜蛋白和鞘糖脂在电形成后仍保持其自然取向。我们预计我们的结果对于重新评估在低盐或无盐条件下使用GUV进行的大量发现非常重要。这些研究,包括有关人造细胞组装,膜机械性质,脂质结构域形成,膜蛋白在脂质结构域中的分配,DNA-脂质相互作用以及界面酶活性的研究结果,很可能会受到其中盐含量的影响。解决方案。

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