Ruocco M J, Siminovitch D J, Long J R, Das Gupta S K, Griffin R G
Francis Bitter National Magnet Laboratory, Massachusetts Institute of Technology, Cambridge 02139, USA.
Biophys J. 1996 Oct;71(4):1776-88. doi: 10.1016/S0006-3495(96)79378-5.
13C- and 2H-NMR experiments were used to examine the phase behavior and dynamic structures of N-palmitoylgalactosylsphingosine (NPGS) (cerebroside) and cholesterol (CHOL) in binary mixtures. 13C spectra of 13C=O-labeled and 2H spectra of [7,7-2H2] chain-labeled NPGS as well as 3 alpha-2H1 CHOL indicate that cerebroside and CHOL are immiscible in binary mixtures at temperatures less than 40 degrees C. In contrast, at 40 degrees C < t < or = T(C) (NPGS), up to 50 mol% CHOL can be incorporated into melted cerebroside bilayers. In addition, 13C and 2H spectra of melted NPGS/CHOL bilayers show a temperature and cholesterol concentration dependence. An analysis of spectra obtained from the melted 13C=O NPGS bilayer phase suggests that the planar NH-C=O group assumes an orientation tilted 40 degrees-55 degrees down from the bilayer interface. The similarity between the orientation of the amide group relative to the bilayer interface in melted bilayers and in the crystal structure of cerebroside suggests that the overall crystallographic conformation of cerebroside is preserved to a large degree in hydrated bilayers. Variation of temperature from 73 degrees to 86 degrees C and CHOL concentration from 0 to 51 mol% results in small changes in this general orientation of the amide group. 2H spectra of chain-labeled NPGS and labeled CHOL in NPGS/CHOL bilayer demonstrate that molecular exchange between the gel and liquid-gel (LG) phases is slow on the 2H time scale, and this facilitates the simulation of the two component 2H spectra of [7,7-2H2]NPGS/CHOL mixtures. Simulation parameters are used to quantitate the fractions of gel and LG cerebroside. The quadrupole splitting of [7,7-2H2]NPGS/CHOL mixtures and 2H simulations allows the LG phase bilayer fraction to be characterized as an equimolar mixture of cerebroside and CHOL.
采用13C和2H核磁共振实验研究了N-棕榈酰半乳糖基鞘氨醇(NPGS,脑苷脂)和胆固醇(CHOL)二元混合物的相行为和动态结构。13C=O标记的13C谱以及[7,7-2H2]链标记的NPGS的2H谱和3α-2H1 CHOL表明,在温度低于40℃时,脑苷脂和CHOL在二元混合物中互不相溶。相反,在40℃<t≤T(C)(NPGS)时,高达50mol%的CHOL可掺入熔融的脑苷脂双层中。此外,熔融的NPGS/CHOL双层的13C和2H谱显示出温度和胆固醇浓度依赖性。对熔融的13C=O NPGS双层相获得的谱进行分析表明,平面NH-C=O基团的取向从双层界面向下倾斜40度至55度。熔融双层中酰胺基团相对于双层界面的取向与脑苷脂晶体结构中的取向相似,这表明脑苷脂的整体晶体构象在水合双层中在很大程度上得以保留。温度从73℃变化到86℃以及CHOL浓度从0到51mol%,导致酰胺基团的这种总体取向发生小的变化。NPGS/CHOL双层中链标记的NPGS和标记的CHOL的2H谱表明,在2H时间尺度上,凝胶相和液-凝胶(LG)相之间的分子交换很慢,这有利于模拟[7,7-2H2]NPGS/CHOL混合物的两组分2H谱。模拟参数用于定量凝胶相和LG脑苷脂的比例。[7,7-2H2]NPGS/CHOL混合物的四极分裂和2H模拟使得LG相双层部分能够被表征为脑苷脂和CHOL的等摩尔混合物。