Fenske D B, Cushley R J
Department of Chemistry, Simon Fraser University, Burnaby, B.C., Canada.
Chem Phys Lipids. 1990 Apr;54(1):9-16. doi: 10.1016/0009-3084(90)90054-u.
31P-NMR has been used to probe the motions of the phosphate moiety of phospholipid head-groups in samples of human low density lipoprotein (LDL) in which particle tumbling has been greatly reduced by increasing the viscosity of the medium, by forming an LDL gel by ultracentrifugation, or by precipitation with heparin. The 31P-NMR spectra of LDL gel give broad "powder-like" lineshapes, with the sign and magnitude of the anisotropy characteristic of the bilayer mesophase, which narrow as the temperature is raised from 5 to 45 degrees C. This narrowing occurs over the same temperature range as the core cholesteryl ester liquid-crystalline to liquid phase transition, suggesting interactions between the surface and core. The 31P lineshapes of LDL-heparin insoluble complexes are also "powder-like", but are broader than native LDL at all temperatures studied. The spectra were simulated assuming an axially-symmetric shielding tensor motionally narrowed by Brownian isotropic diffusion [Burnell et al. (1980) Biochim. Biophys. Acta 603, 63-69], allowing determination of the lateral diffusion coefficients, DT, and the chemical shift anisotropy, delta sigma, of the monolayer phospholipids. Relative to LDL gel, the temperature-dependence of DT was reduced in the LDL-heparin insoluble complexes, and delta sigma was increased from 50 to 60 ppm. The results suggest that insoluble complex formation slows phospholipid lateral diffusion in the LDL monolayer and alters the orientation and/or order of the head-group.
31P-核磁共振已被用于探测人低密度脂蛋白(LDL)样本中磷脂头部基团磷酸部分的运动。在这些样本中,通过增加介质粘度、超速离心形成LDL凝胶或用肝素沉淀等方法,极大地降低了颗粒翻滚。LDL凝胶的31P-核磁共振谱给出宽的“粉末状”线形,具有双层中间相特有的各向异性的符号和大小,当温度从5℃升高到45℃时变窄。这种变窄发生在与核心胆固醇酯液晶到液相转变相同的温度范围内,表明表面和核心之间存在相互作用。LDL-肝素不溶性复合物的31P线形也是“粉末状”,但在所有研究温度下都比天然LDL更宽。假设轴向对称屏蔽张量通过布朗各向同性扩散实现运动变窄[Burnell等人(1980年),《生物化学与生物物理学学报》603,63 - 69],对光谱进行模拟,从而可以确定单层磷脂的横向扩散系数DT和化学位移各向异性δσ。相对于LDL凝胶,LDL-肝素不溶性复合物中DT的温度依赖性降低,且δσ从50 ppm增加到60 ppm。结果表明,不溶性复合物的形成减缓了LDL单层中磷脂的横向扩散,并改变了头部基团的取向和/或有序性。