MULTINUCLEAR AND MAGIC-ANGLE-SPINNING NMR INVESTIGATIONS OF MOLECULAR-ORGANIZATION IN PHOSPHOLIPID TRIGLYCERIDE AQUEOUS DISPERSIONS

被引:23
作者
LI, KL
TIHAL, CA
GUO, M
STARK, RE
机构
[1] CUNY COLL STATEN ISL,DEPT CHEM,50 BAY ST,STATEN ISL,NY 10301
[2] CUNY,GRAD SCH,STATEN ISL,NY 10301
关键词
D O I
10.1021/bi00089a008
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The supramolecular organization of multi-bilayers formed by aqueous egg phosphatidylcholine-triolein (PC-TO) mixtures has been investigated using P-31, C-13, and H-1 nuclear magnetic resonance (NMR). For these emulsions, which mimic substrates in the early hydrolytic stages of fat digestion, the NMR spectra obtained with magic-angle spinning (MAS) exhibit resolution comparable to that of sonicated vesicles and integrated peak intensities consistent with their chemical composition. Both P-31 line shapes and MAS sideband patterns from the phosphocholine group indicate that mixing with triolein produces a PC bilayer which remains predominantly liquid crystalline in its organization; nevertheless, anomalous spectral features in MAS spectra may be attributed to additional phases in which the headgroups adopt a different orientation with respect to the bilayer normal, and tight packing enhances phosphorus-phosphorus interactions. C-13 and H-1 line widths monitored as a function of PC mole fraction, spinning speed, and decoupling strength show that the choline headgroups and glycerol backbones are anchored preferentially in the phospholipid-triglyceride assemblies, whereas all acyl chains become very fluid. The average degree of chain order also decreases for the mixed dispersions, as judged from spinning-sideband intensities in H-1 MAS NMR spectra. The absence of proton spin-diffusion effects in the PC-TO multilayers is demonstrated by examination of their spinning sidebands and relaxation times, making it possible to use MAS-assisted two-dimensional NMR to assign overlapped H-1 resonances and to identify proximal interactions between the two constituents. The usefulness of these NMR strategies in mechanistic studies of gastric fat digestion is also discussed.
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页码:9926 / 9935
页数:10
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