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Preparation and Properties of Asymmetric Large Unilamellar Vesicles: Interleaflet Coupling in Asymmetric Vesicles Is Dependent on Temperature but Not Curvature

机译:不对称大单层囊泡的制备和性能:不对称囊泡中的叶间偶联取决于温度而不是曲率

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摘要

Asymmetry of inner and outer leaflet lipid composition is an important characteristic of eukaryotic plasma membranes. We previously described a technique in which methyl-β-cyclodextrin-induced lipid exchange is used to prepare biological membrane-like asymmetric small unilamellar vesicles (SUVs). Here, to mimic plasma membranes more closely, we used a lipid-exchange-based method to prepare asymmetric large unilamellar vesicles (LUVs), which have less membrane curvature than SUVs. Asymmetric LUVs in which sphingomyelin (SM) or SM + 1-palmitoyl-2-oleoyl-phosphatidylcholine was exchanged into the outer leaflet of vesicles composed of 1,2-dioleoyl-phosphatidylethanolamine (DOPE) and 1-palmitoyl-2-oleoyl-phosphatidylserine (POPS) were prepared with or without cholesterol. Approximately 80–100% replacement of outer leaflet DOPE and POPS was achieved. At room temperature, SM exchange into the outer leaflet increased the inner leaflet lipid order, suggesting significant interleaflet interaction. However, the SM-rich outer leaflet formed an ordered state, melting with a midpoint at ∼37°C. This was about the same value observed in pure SM vesicles, and was significantly higher than that observed in symmetric vesicles with the same SM content, which melted at ∼20°C. In other words, ordered state formation by outer-leaflet SM in asymmetric vesicles was not destabilized by an inner leaflet composed of DOPE and POPS. These properties suggest that the coupling between the physical states of the outer and inner leaflets in these asymmetric LUVs becomes very weak as the temperature approaches 37°C. Overall, the properties of asymmetric LUVs were very similar to those previously observed in asymmetric SUVs, indicating that they do not arise from the high membrane curvature of asymmetric SUVs.
机译:内部和外部小叶脂质成分的不对称是真核质膜的重要特征。我们先前描述了一种技术,其中甲基-β-环糊精诱导的脂质交换用于制备生物膜状不对称小单层小囊泡(SUVs)。在这里,为了更紧密地模拟质膜,我们使用了基于脂质交换的方法来制备不对称的大单层囊泡(LUV),其膜曲率比SUV小。不对称LUV中的鞘磷脂(SM)或SM + 1-棕榈酰基-2-油酰基磷脂酰胆碱被交换到由1,2-二醇酰基-磷脂酰乙醇胺(DOPE)和1-棕榈酰基-2-油酰基-磷脂酰丝氨酸组成的囊泡的外部小叶中(POPS)制备有或没有胆固醇。外部小叶DOPE和POPS的替换率约为80–100%。在室温下,SM交换到外部小叶中会增加内部小叶的脂质顺序,表明明显的小叶间相互作用。然而,富含SM的外部小叶形成有序状态,在约37℃下以中点熔化。这与在纯SM囊泡中观察到的值大约相同,并且显着高于在相同SM含量下在约20℃熔化的对称囊泡中观察到的值。换句话说,由不对称囊泡中的外部小叶SM形成的有序状态不会被由DOPE和POPS组成的内部小叶所破坏。这些性质表明,当温度接近37°C时,这些不对称LUV中外部和内部小叶的物理状态之间的耦合变得非常弱。总体而言,不对称LUV的特性与以前在不对称SUV中观察到的特性非常相似,这表明它们并非源于不对称SUV的高膜曲率。

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