Centre of Photochemistry, Russian Academy of Sciences, Moscow, Russia.
Biophys J. 2012 Apr 18;102(8):1856-65. doi: 10.1016/j.bpj.2012.03.043.
For canonical lipid raft mixtures of cholesterol (chol), N-palmitoylsphingomyelin (PSM), and 1-palmitoyl-2-oleoylphosphatidylcholine (POPC), electron paramagnetic resonance (EPR) of spin-labeled phospholipids--which is insensitive to domain size--is used to determine the ternary phase diagram at 23°C. No phase boundaries are found for binary POPC/chol mixtures, nor for ternary mixtures with PSM content <24 mol %. EPR lineshapes indicate that conversion from the liquid-disordered (L(α)) to liquid-ordered (L(o)) phase occurs continuously in this region. Two-component EPR spectra and several tie lines attributable to coexistence of gel (L(β)) and fluid phases are found for ternary mixtures with low cholesterol or low POPC content. For PSM/POPC alone, coexistence of L(α) and L(β) phases occurs over the range 50-95.5 mol % PSM. A further tie line is found at 3 mol % chol with endpoints at 50 and ≥77 mol % PSM. For PSM/chol, L(β)-L(o) coexistence occurs over the range 10-38 mol % chol and further tie lines are found at 4.5 and 7 mol % POPC. Two-component EPR spectra indicative of fluid-fluid (L(α)-L(o)) phase separation are found for lipid compositions: 25%<PSM<65%, 5%<chol<30-35%, 65%>POPC>10%, and confirmed by nonlinear EPR. Tie lines are identified in the L(α)-L(o) coexistence region, indicating that the fluid domains are of sufficient size to obey the phase rule. The three-phase triangle is bounded approximately by the compositions 40 and 75 mol % PSM with 10 mol % chol, and 60 mol % PSM with 25 mol % chol. These studies define the compositions of raft-like L(o) phases for a minimal realistic biological lipid mixture.
对于胆固醇(chol)、N-棕榈酰鞘氨醇(PSM)和 1-棕榈酰基-2-油酰基磷脂酰胆碱(POPC)的规范脂质筏混合物,使用自旋标记磷脂的电子顺磁共振(EPR)--对域大小不敏感--用于在 23°C 下确定三元相图。在二元 POPC/chol 混合物中或 PSM 含量<24 mol %的三元混合物中均未发现相界。EPR 线宽表明,在该区域中,从无序液体(L(α))到有序液体(L(o))相的转变连续发生。对于胆固醇或 POPC 含量低的三元混合物,发现了归因于凝胶(L(β))和流体相共存的两分量 EPR 谱和几条 tie 线。对于 PSM/POPC 单独存在,在 50-95.5 mol %PSM 的范围内发生 L(α)和 L(β)相共存。在 3 mol %chol 处发现了另一条 tie 线,端点在 50 和≥77 mol %PSM 处。对于 PSM/chol,在 10-38 mol %chol 的范围内发生 L(β)-L(o)共存,并且在 4.5 和 7 mol %POPC 处发现了进一步的 tie 线。对于脂质组成:25%<PSM<65%、5%<chol<30-35%、65%>POPC>10%,发现了两分量 EPR 谱,表明存在流体-流体(L(α)-L(o))相分离,并通过非线性 EPR 得到证实。在 L(α)-L(o)共存区域中确定了 tie 线,表明流体域的尺寸足以满足相律。三相三角形大致由 40 和 75 mol %PSM 与 10 mol %chol 和 60 mol %PSM 与 25 mol %chol 的组成所限定。这些研究确定了最小现实生物脂质混合物中类筏 L(o)相的组成。