Malewicz B, Baumann W J
Membrane Chemistry and Biology Section, Hormel Institute, University of Minnesota, Austin 55912, USA.
Lipids. 1996 Nov;31(11):1189-95. doi: 10.1007/BF02524294.
We show that phosphorus-31 nuclear magnetic resonance spectroscopy can be used to distinguish and to quantify the alk-1-enylacyl, alkylacyl, and diacyl glycerophosphoethanolamine (GPE) subclasses, and the respective glycerophosphocholine (GPC) subclasses, in their native form without prior degradation or derivatization, provided the phospholipids are observed in the nonaggregated state. Monomeric phospholipid distribution is ascertained by recording the spectra, after removal of metal ions, on CDCl3/CD3OD/D2O (50:50:15, by vol) solutions. The utility of this approach is exemplified for the ethanolamine glycerophospholipids (EPL) from bovine brain and the choline glycerophospholipids (CPL) from bovine heart. Sharp and well-resolved resonances are obtained for alkylacylGPE (+0.395 ppm; re 1% H3PO4), alkenylacylGPE (+0.353 ppm), and diacylGPE (+0.315 ppm), and for alkylacylGPC (-0.383 ppm), alkenyl-acylGPC (-0.436 ppm) and diacylGPC (-0.451 ppm). Integrated peak areas are shown to closely correlate with dose. Accurate quantitation of EPL and CPL subclasses at submicromolar levels can further be facilitated by use of synthetic dialkylGPE (+0.602 ppm) and dialkylGPC (-0.196 ppm) as internal standards. The method is simple, rapid, sensitive and reproducible, and permits the complete resolution and direct quantitation of all ethanolamine and choline glycerophospholipid subclasses quite independent of fatty chain length and degree of unsaturation.
我们表明,磷-31核磁共振光谱可用于区分和定量alk-1-烯基酰基、烷基酰基和二酰基甘油磷酸乙醇胺(GPE)亚类以及各自的甘油磷酸胆碱(GPC)亚类,且无需事先降解或衍生化,前提是磷脂以非聚集状态观察。通过在去除金属离子后,在CDCl3/CD3OD/D2O(体积比为50:50:15)溶液上记录光谱来确定单体磷脂分布。该方法的实用性以牛脑乙醇胺甘油磷脂(EPL)和牛心胆碱甘油磷脂(CPL)为例进行了说明。对于烷基酰基GPE(+0.395 ppm;相对于1% H3PO4)、烯基酰基GPE(+0.353 ppm)和二酰基GPE(+0.315 ppm),以及对于烷基酰基GPC(-0.383 ppm)、烯基酰基GPC(-0.436 ppm)和二酰基GPC(-0.451 ppm),获得了尖锐且分辨率良好的共振峰。积分峰面积显示与剂量密切相关。通过使用合成二烷基GPE(+0.602 ppm)和二烷基GPC(-0.196 ppm)作为内标,可以进一步促进亚微摩尔水平下EPL和CPL亚类的准确定量。该方法简单、快速、灵敏且可重复,并且能够完全分辨并直接定量所有乙醇胺和胆碱甘油磷脂亚类,而与脂肪酸链长度和不饱和度无关。