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Local Partition Coefficients Govern Solute Permeability of Cholesterol-Containing Membranes

机译:局部分配系数决定了含胆固醇膜的溶质渗透率

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摘要

The permeability of lipid membranes for metabolic molecules or drugs is routinely estimated from the solute’s oil/water partition coefficient. However, the molecular determinants that modulate the permeability in different lipid compositions have remained unclear. Here, we combine scanning electrochemical microscopy and molecular-dynamics simulations to study the effect of cholesterol on membrane permeability, because cholesterol is abundant in all animal membranes. The permeability of membranes from natural lipid mixtures to both hydrophilic and hydrophobic solutes monotonously decreases with cholesterol concentration [Chol]. The same is true for hydrophilic solutes and planar bilayers composed of dioleoyl-phosphatidylcholine or dioleoyl-phosphatidyl-ethanolamine. However, these synthetic lipids give rise to a bell-shaped dependence of membrane permeability on [Chol] for very hydrophobic solutes. The simulations indicate that cholesterol does not affect the diffusion constant inside the membrane. Instead, local partition coefficients at the lipid headgroups and at the lipid tails are modulated oppositely by cholesterol, explaining the experimental findings. Structurally, these modulations are induced by looser packing at the lipid headgroups and tighter packing at the tails upon the addition of cholesterol.
机译:通常根据溶质的油/水分配系数估算脂质膜对代谢分子或药物的渗透性。然而,调节不同脂质组成中的渗透性的分子决定因素仍然不清楚。在这里,我们结合扫描电化学显微镜和分子动力学模拟来研究胆固醇对膜通透性的影响,因为胆固醇在所有动物膜中都丰富。膜从天然脂质混合物到亲水性和疏水性溶质的渗透率随胆固醇浓度单调降低[Chol]。对于由二油酰基-磷脂酰胆碱或二油酰基-磷脂酰-乙醇胺组成的亲水性溶质和平面双层也是如此。然而,对于非常疏水的溶质,这些合成脂质引起膜渗透性对[Chol]的钟形依赖性。模拟表明胆固醇不影响膜内的扩散常数。相反,胆固醇对脂质头基和脂质尾部的局部分配系数有相反的调节作用,从而解释了实验结果。从结构上讲,这些调节是由于加入胆固醇后脂质头基的堆积较松而尾部的堆积较紧而引起的。

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