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Investigation of Domain Formation in Sphingomyelin/Cholesterol/POPC Mixtures by Fluorescence Resonance Energy Transfer and Monte Carlo Simulations

机译:通过荧光共振能量转移和蒙特卡洛模拟研究鞘磷脂/胆固醇/ POPC混合物中的畴形成

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摘要

We have recently proposed a phase diagram for mixtures of porcine brain sphingomyelin (BSM), cholesterol (Chol), and 1-palmitoyl-2-oleoyl-phosphatidylcholine (POPC) on the basis of kinetics of carboxyfluorescein efflux induced by the amphipathic peptide δ-lysin. Although that study indicated the existence of domains, phase separations in the micrometer scale have not been observed by fluorescence microscopy in BSM/Chol/POPC mixtures, though they have for some other sphingomyelins (SM). Here we examine the same BSM/Chol/POPC system by a combination of fluorescence resonance energy transfer (FRET) and Monte Carlo simulations. The results clearly demonstrate that domains are formed in this system. Comparison of the FRET experimental data with the computer simulations allows the estimate of lipid-lipid interaction Gibbs energies between SM/Chol, SM/POPC, and Chol/POPC. The latter two interactions are weakly repulsive, but the interaction between SM and Chol is favorable. Furthermore, those three unlike lipid interaction parameters between the three possible lipid pairs are sufficient for the existence of a closed loop in the ternary phase diagram, without the need to involve multibody interactions. The calculations also indicate that the largest POPC domains contain several thousand lipids, corresponding to linear sizes of the order of a few hundred nanometers.
机译:我们最近根据两亲性肽δ-诱导的羧基荧光素外排动力学,提出了猪脑鞘磷脂(BSM),胆固醇(Chol)和1-棕榈酰-2-油酰基磷脂酰胆碱(POPC)混合物的相图。溶素。尽管该研究表明存在域,但是通过荧光显微镜在BSM / Chol / POPC混合物中未观察到微米级的相分离,尽管它们对于某些其他鞘磷脂(SM)也存在。在这里,我们通过结合荧光共振能量转移(FRET)和蒙特卡洛模拟研究了相同的BSM / Chol / POPC系统。结果清楚地表明在此系统中形成了域。 FRET实验数据与计算机模拟的比较允许估计SM / Chol,SM / POPC和Chol / POPC之间的脂质-脂质相互作用吉布斯能量。后两个相互作用是弱排斥的,但SM和Chol之间的相互作用是有利的。此外,三个可能的脂质对之间的这三个不同的脂质相互作用参数足以在三元相图中存在闭环,而无需涉及多体相互作用。计算还表明最大的POPC结构域包含数千个脂质,对应于数百纳米量级的线性大小。

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