Hsieh C H, Sue S C, Lyu P C, Wu W G
Department of Life Sciences, National Tsing Hua University, Hsinchu, Taiwan.
Biophys J. 1997 Aug;73(2):870-7. doi: 10.1016/S0006-3495(97)78120-7.
Diphytanoylphosphatidylcholine (DPhPC) has often been used in the study of protein-lipid interaction and membrane channel activity, because of the general belief that it has high bilayer stability, low ion leakage, and fatty acyl packing comparable to that of phospholipid bilayers in the liquid-crystalline state. In this solid-state 31P and 2H NMR study, we find that the membrane packing geometry and headgroup orientation of DPhPC are highly sensitive to the temperature studied and its water content. The phosphocholine headgroup of DPhPC starts to change its orientation at a water content as high as approximately 16 water molecules per lipid, as evidenced by hydration-dependent 2H NMR study at room temperature. In addition, a temperature-induced structural transition in the headgroup orientation is detected in the temperature range of approximately 20-60 degrees C for lipids with approximately 8-11 water molecules per DPhPC. Dehydration of the lipid by one more water molecule leads to a nonlamellar, presumably cubic, phase formation. The lipid packing becomes a hexagonal phase at approximately 6 water molecules per lipid. A phase diagram of DPhPC in the temperature range of -40 degrees C to 80 degrees C is thus constructed on the basis of NMR results. The newly observed hydration-dependent DPhPC lipid polymorphism emphasizes the importance of molecular packing in the headgroup region in modulating membrane structure and protein-induced pore formation of the DPhPC bilayer.
二植烷酰磷脂酰胆碱(DPhPC)常用于蛋白质-脂质相互作用和膜通道活性的研究,因为人们普遍认为它具有高双层稳定性、低离子泄漏率,并且其脂肪酰堆积与液晶态磷脂双层相当。在这项固态31P和2H核磁共振研究中,我们发现DPhPC的膜堆积几何结构和头基取向对所研究的温度及其含水量高度敏感。室温下的水合依赖性2H核磁共振研究表明,当含水量高达每脂质约16个水分子时,DPhPC的磷酸胆碱头基开始改变其取向。此外,对于每个DPhPC含有约8-11个水分子的脂质,在约20-60摄氏度的温度范围内检测到头基取向的温度诱导结构转变。脂质再失去一个水分子会导致形成非层状、可能是立方相。当每脂质约6个水分子时,脂质堆积变为六方相。因此,基于核磁共振结果构建了DPhPC在-40摄氏度至80摄氏度温度范围内的相图。新观察到的水合依赖性DPhPC脂质多态性强调了头基区域分子堆积在调节DPhPC双层膜结构和蛋白质诱导的孔形成中的重要性。