Schorn K, Marsh D
Max-Planck-Institut für Biophysikalische Chemie, Abteilung Spektroskopie, Göttingen, Germany.
Biophys J. 1996 Dec;71(6):3320-9. doi: 10.1016/S0006-3495(96)79524-3.
The dynamic molecular lipid chain conformations in fully hydrated dimyristoyl phosphatidylcholine (DMPC)-dimyristoyl glycerol (DMG) mixtures have been investigated by 2H-NMR spectroscopy of the individual lipid components, the sn-2 chains of which were perdeuterated or, in the case of DMG, specifically deuterated at the C-2 position. Mixtures of compositions corresponding to the three different regions of the binary phase diagram in which the fluid phase is lamellar (DMPC:DMG 70:30 mol/mol), inverted hexagonal (DMPC:DMG 45:55 and 40:60 mol/mol), or isotropic (DMPC:DMG 20:80 mol/mol) were investigated. The gel phase in all three regions of the phase diagram has a lamellar structure, with the lipid chains rotating about the molecular long axis but executing only limited angular excursions. In the fluid lamellar phase of the 70:30 mol/mol DMPC-DMG mixture the profile of segmental chain flexibility is similar to that in single-component phospholipid bilayers and is characterized by an order parameter plateau for both lipid components. The chain order of the DMPC component is greater than in bilayers of DMPC alone and is also greater than that of the DMG component. In the inverted hexagonal phase of the 45:55 mol/mol DMPC-DMG mixture the chain flexibility profile is characterized by more widely spaced segmental order parameters off the plateau region. The intrinsic degree of chain order in the inverted hexagonal phase is less than in the lamellar phase of the 70:30 mol/mol mixture, and the difference in chain order between the DMPC and DMG components is reduced relative to that in the lamellar phase. The unique conformational features at the C-2 position of the sn-2 chain that characterize bilayers of diacyl phospholipids are found also for the diacylglycerol molecules in the fluid lamellar phase and most probably also in the inverted hexagonal phase. The DMG molecules are therefore integrated in the membrane (or nonlamellar lipid phase) in a configuration that is similar to that of the phospholipids and different from the crystal structure of diacylglycerols.
通过对单个脂质成分进行2H-核磁共振光谱研究,考察了完全水合的二肉豆蔻酰磷脂酰胆碱(DMPC)-二肉豆蔻酰甘油(DMG)混合物中动态分子脂质链构象。其中,sn-2链进行了全氘代,或者在DMG的情况下,在C-2位置进行了特异性氘代。研究了对应于二元相图三个不同区域的组成混合物,其中流体相分别为层状(DMPC:DMG 70:30摩尔/摩尔)、反相六角形(DMPC:DMG 45:55和40:60摩尔/摩尔)或各向同性(DMPC:DMG 20:80摩尔/摩尔)。相图所有三个区域中的凝胶相都具有层状结构,脂质链围绕分子长轴旋转,但仅进行有限的角度偏移。在70:30摩尔/摩尔DMPC-DMG混合物的流体层状相中,链段柔韧性分布与单组分磷脂双层中的相似,并且两种脂质成分均具有序参数平台。DMPC成分的链序大于单独的DMPC双层中的链序,也大于DMG成分的链序。在45:55摩尔/摩尔DMPC-DMG混合物的反相六角相中,链柔韧性分布的特征是平台区域外的链段序参数间隔更宽。反相六角相中的固有链序程度低于70:30摩尔/摩尔混合物层状相中的,并且DMPC和DMG成分之间的链序差异相对于层状相有所减小。sn-2链C-2位置处表征二酰基磷脂双层的独特构象特征在流体层状相中的二酰基甘油分子中也有发现,并且很可能在反相六角相中也有。因此,DMG分子以与磷脂相似且不同于二酰基甘油晶体结构的构型整合到膜(或非层状脂质相)中。