Zhang Zhancheng, Bhide Shreyas Y, Berkowitz Max L
Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, 27599, USA.
J Phys Chem B. 2007 Nov 8;111(44):12888-97. doi: 10.1021/jp074037i. Epub 2007 Oct 17.
We performed six molecular dynamics simulations: three on hydrated bilayers containing pure phospholipids and three on hydrated bilayers containing mixtures of these phospholipids with cholesterol. The phospholipids in our simulations were SSM (sphingomyelin containing a saturated 18:0 acyl chain), OSM (sphingomyelin with an unsaturated 18:1 acyl chain), and POPC (palmitoyloleoylphosphatidylcholine containing one saturated and one unsaturated chain). Data from our simulations were used to study systematically the effect of cholesterol on phospholipids that differed in their headgroup and tail composition. In addition to the structural analysis, we performed an energetic analysis and observed that energies of interaction between cholesterol and neighboring SM molecules are similar to the energies of interaction between cholesterol and POPC. We also observed that the interaction energy between cholesterol and neighboring lipids cannot be used for the determination of which lipids are involved in the creation of a complex.
三项针对含有纯磷脂的水合双层膜,三项针对含有这些磷脂与胆固醇混合物的水合双层膜。我们模拟中的磷脂分别是SSM(含有饱和18:0酰基链的鞘磷脂)、OSM(含有不饱和18:1酰基链的鞘磷脂)和POPC(含有一条饱和链和一条不饱和链的棕榈酰油酰磷脂酰胆碱)。我们模拟得到的数据用于系统研究胆固醇对头部基团和尾部组成不同的磷脂的影响。除了结构分析,我们还进行了能量分析,并观察到胆固醇与相邻SM分子之间的相互作用能与胆固醇与POPC之间的相互作用能相似。我们还观察到,胆固醇与相邻脂质之间的相互作用能不能用于确定哪些脂质参与了复合物的形成。