Silvius J R
Biochim Biophys Acta. 1986 May 28;857(2):217-28. doi: 10.1016/0005-2736(86)90350-0.
Phase diagrams have been determined for mixing of binary mixtures of phosphatidylethanolamines (PE) with phosphatidylcholines (PC), using high-sensitivity differential scanning calorimetry and allowing extensive incubation times to equilibrate samples in the solid phase. All of the PE-PC systems examined, which contained saturated or trans-unsaturated PC components, showed limited solid-phase miscibility, chiefly because the PC component can adopt more solid phases than the PE component. For the dielaidoyl PE-PC system, the lamellar-to-hexagonal II transition endotherm seen at 63.5 degrees C for the pure PE is shifted to considerably higher temperatures upon incorporation of even low mole fractions of PC. All of the PE-PC systems examined here reveal a complete miscibility in the liquid phase, including the dipalmitoyl PE-dielaidoyl PC system for which limited liquid-phase miscibility had previously been suggested (Wu, S-H. and McConnell, H.M. (1975) Biochemistry 14, 847-854). However, PE-PC mixing appears to be less nearly ideal than the mixing of either PE or PC with anionic phospholipids. Our results demonstrate that calorimetry can be useful in determining accurate phase diagrams for lipid mixtures of this type, but only if proper attention is given to the existence and the proper equilibration of multiple solid phases in these systems.
利用高灵敏度差示扫描量热法,并给予足够长的孵育时间以使样品在固相中达到平衡,已确定了磷脂酰乙醇胺(PE)与磷脂酰胆碱(PC)二元混合物混合的相图。所有检测的PE-PC体系,其中包含饱和或反式不饱和PC组分,均显示出有限的固溶混性,主要原因是PC组分比PE组分能形成更多的固相。对于二油酰PE-PC体系,纯PE在63.5℃时出现的片层到六方II型转变吸热峰,在加入低摩尔分数的PC后会显著移至更高温度。此处检测的所有PE-PC体系在液相中均表现出完全互溶性,包括二棕榈酰PE-二油酰PC体系,之前曾有人认为该体系在液相中的互溶性有限(Wu, S-H.和McConnell, H.M.(1975年)《生物化学》14, 847 - 854)。然而,PE-PC的混合似乎不如PE或PC与阴离子磷脂的混合接近理想状态。我们的结果表明,量热法可用于确定此类脂质混合物的精确相图,但前提是要充分关注这些体系中多个固相的存在和适当平衡。