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Influence of the membrane environment on cholesterol transfer

机译:膜环境对胆固醇转移的影响

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摘要

Cholesterol, an essential component in biological membranes, is highly unevenly distributed within the cell, with most localized in the plasma membrane while only a small fraction is found in the endoplasmic reticulum, where it is synthesized. Cellular membranes differ in lipid composition and protein content, and these differences can exist across their leaflets too. This thermodynamic landscape that cellular membranes impose on cholesterol is expected to modulate its transport. To uncover the role the membrane environment has on cholesterol inter- and intra-membrane movement, we used time-resolved small angle neutron scattering to study the passive movement of cholesterol between and within membranes with varying degrees of saturation content. We found that cholesterol moves systematically slower as the degree of saturation in the membranes increases, from a palmitoyl oleyl phosphotidylcholine membrane, which is unsaturated, to a dipalmitoylphosphatidylcholine (DPPC) membrane, which is fully saturated. Additionally, we found that the energetic barrier to move cholesterol in these phosphatidylcholine membranes is independent of their relative lipid composition and remains constant for both flip-flop and exchange at ∼100 kJ/mol. Further, by replacing DPPC with the saturated lipid palmitoylsphingomyelin, an abundant saturated lipid of the outer leaflet of the plasma membrane, we found the rates decreased by a factor of two. This finding is in stark contrast with recent molecular dynamic simulations that predict a dramatic slow-down of seven orders of magnitude for cholesterol flipping in membranes with a similar phosphocholine and SM lipid composition.
机译:胆固醇是生物膜的重要组成部分,在细胞内分布非常不均匀,大部分分布在质膜上,而在合成它的内质网中只有一小部分。细胞膜的脂质组成和蛋白质含量不同,这些差异也可能存在于整个小叶中。细胞膜强加于胆固醇的这种热力学态势有望调节其转运。为了揭示膜环境对胆固醇膜内和膜内运动的作用,我们使用了时间分辨小角度中子散射来研究胆固醇在膜之间和膜内具有不同饱和度的被动运动。我们发现胆固醇随着膜中饱和度的增加而系统地变慢,从不饱和的棕榈酰基油基磷脂酰胆碱膜到完全饱和的二棕榈酰磷脂酰胆碱(DPPC)膜。此外,我们发现在这些磷脂酰胆碱膜中移动胆固醇的能量屏障与它们的相对脂质组成无关,并且对于触发器和交换都保持恒定,约为100 kJ / mol。此外,通过用饱和脂质棕榈酰鞘磷脂(质膜外小叶的丰富饱和脂质)代替DPPC,我们发现速率降低了两倍。这一发现与最近的分子动力学模拟形成鲜明对比,后者预测具有相似的磷酸胆碱和SM脂质成分的膜中胆固醇的翻转将显着降低七个数量级。

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