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磷脂 - 甘油三酯水分散体中分子组织的多核及魔角旋转核磁共振研究。

Multinuclear and magic-angle spinning NMR investigations of molecular organization in phospholipid-triglyceride aqueous dispersions.

作者信息

Li K L, Tihal C A, Guo M, Stark R E

机构信息

Department of Chemistry, College of Staten Island, City University of New York 10301.

出版信息

Biochemistry. 1993 Sep 28;32(38):9926-35. doi: 10.1021/bi00089a008.

Abstract

The supramolecular organization of multi-bilayers formed by aqueous egg phosphatidylcholine-triolein (PC-TO) mixtures has been investigated using 31P, 13C, and 1H 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 31P 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. 13C and 1H 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 1H 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 1H 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.

摘要

利用31P、13C和1H核磁共振(NMR)研究了由水性卵磷脂 - 三油酸甘油酯(PC - TO)混合物形成的多层超分子结构。对于这些模拟脂肪消化早期水解阶段底物的乳液,通过魔角旋转(MAS)获得的NMR光谱显示出与超声处理的囊泡相当的分辨率,并且积分峰强度与其化学组成一致。来自磷酸胆碱基团的31P线形状和MAS边带模式均表明,与三油酸甘油酯混合会产生一种PC双层,其结构主要保持液晶态;然而,MAS光谱中的异常光谱特征可能归因于其他相,其中头基团相对于双层法线采用不同的取向,并且紧密堆积增强了磷 - 磷相互作用。作为PC摩尔分数、旋转速度和解耦强度的函数监测的13C和1H线宽表明,胆碱头基团和甘油主链优先锚定在磷脂 - 甘油三酯组装体中,而所有酰基链变得非常流动。从1H MAS NMR光谱中的旋转边带强度判断,混合分散体的平均链序度也降低。通过检查其旋转边带和弛豫时间,证明了PC - TO多层膜中不存在质子自旋扩散效应,这使得利用MAS辅助二维NMR来指定重叠的1H共振并识别两种成分之间的近端相互作用成为可能。还讨论了这些NMR策略在胃脂肪消化机理研究中的有用性。

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