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Characterization of the Ternary Mixture of Sphingomyelin POPC and Cholesterol: Support for an Inhomogeneous Lipid Distribution at High Temperatures

机译:鞘磷脂POPC和胆固醇的三元混合物的表征:支持高温下不均匀的脂质分布。

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摘要

A ternary lipid mixture of palmitoyl-oleoyl-phosphatidylcholine (POPC), palmitoyl-erythro-sphingosylphosphorylcholine (PSM), and cholesterol at a mixing ratio of 37.5:37.5:25 mol/mol/mol was characterized using fluorescence microscopy, 2H NMR, and electron paramagnetic resonance spectroscopy. The synthetic PSM provides an excellent molecule for studying the molecular properties of raft phases. It shows a narrow phase transition at a temperature of 311 K and is commercially available with a perdeuterated sn-2 chain. Fluorescence microscopy shows that large inhomogeneities in the mixed membranes are observed in the coexistence region of liquid-ordered and liquid-disordered lipid phases. Above 310 K, no optically detectable phase separation was shown. Upon decrease in temperature, a redistribution of the cholesterol into large liquid-ordered PSM/cholesterol domains and depletion of cholesterol from liquid-disordered POPC domains was observed by 2H NMR and electron paramagnetic resonance experiments. However, there is no complete segregation of the cholesterol into the liquid-ordered phase and also POPC-rich domains contain the sterol in the phase coexistence region. We further compared order parameters and packing properties of deuterated PSM or POPC in the raft mixture at 313 K, i.e., in the liquid crystalline phase state. PSM shows significantly larger 2H NMR order parameters in the raft phase than POPC. This can be explained by an inhomogeneous interaction of cholesterol between the lipid species and the mutual influence of the phospholipids on each other. These observations point toward an inhomogeneous distribution of the lipids also in the liquid crystalline phase at 313 K. From the prerequisite that order parameters are identical in a completely homogeneously mixed membrane, we can determine a minimal microdomain size of 45–70 nm in PSM/POPC/cholesterol mixtures above the main phase transition of all lipids.
机译:使用荧光显微镜法表征了棕榈酰基-油酰基-磷脂酰胆碱(POPC),棕榈酰基-赤型-鞘氨酰磷酰胆碱(PSM)和胆固醇的三元脂质混合物,其混合比为37.5:37.5:25 mol / mol / mol, 2核磁共振和电子顺磁共振光谱。合成的PSM为研究筏相的分子特性提供了极好的分子。它在311 K的温度下显示出狭窄的相变,可通过带有氘代的sn-2链购得。荧光显微镜显示,在液序和液序脂质相的共存区域中观察到混合膜中存在较大的不均匀性。高于310 K,未显示光学可检测的相分离。温度降低后,通过 2 NMR和电子顺磁共振实验观察到胆固醇重新分布到大的有序PSM /胆固醇结构域中,胆固醇从液态无序POPC结构域中消失。但是,没有将胆固醇完全分离成液相有序相,并且富含POPC的结构域在相共存区域中包含固醇。我们进一步比较了氘代PSM或POPC在313 K(即液晶相状态)在筏混合物中的订购参数和填充特性。 PSM在筏相中显示出比POPC大得多的 2 H NMR顺序参数。这可以通过脂质种类之间胆固醇的不均匀相互作用以及磷脂彼此之间的相互影响来解释。这些观察结果表明,在313 K的液晶相中,脂质的分布也不均匀。从完全均匀混合的膜中订购参数相同的前提出发,我们可以确定PSM / 45中最小的微区尺寸为45–70 nm所有脂质的主相变以上的POPC /胆固醇混合物。

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