Pocsfalvi G, Malorni A, Mancini I, Guella G, Pietra F
Centro Internazionale di Servizi di Spettrometria di Massa, C.N.R., Istituto di Scienze dell'Alimentazione, via Roma 52 A-C, 83100 Avellino, Italy.
Rapid Commun Mass Spectrom. 2000;14(23):2247-59. doi: 10.1002/1097-0231(20001215)14:23<2247::AID-RCM159>3.0.CO;2-6.
We report here on the structural characterization of a highly heterogeneous mixture of glucosylceramides (GlcCers) isolated from a deep-water Mediterranian dendrophylliid coral, Dendrophyllia cornigera. The neutral glycosphingolipid (GSL) components of the coral were separated into three HPLC fractions which were structurally characterized by nuclear magnetic resonance (NMR) and mass spectrometry (MS). NMR analysis revealed a beta-glucosylpyranose, a methyl branched conjugated sphingadienine and alpha-hydroxy fatty acid moieties characteristic for the species. Molecular mass distributions of the HPLC fractions were monitored using single-stage MS. At least 17 different GlcCer constituents with variable long-chain base and fatty acid residues were observed based on the molecular ion peaks in the liquid secondary ion (LSI) survey spectra. Structures of the individual components were revealed by product ion spectra of the alkali-cationized molecules (M + Cat), which resulted in two characteristic fragment ions, F(F) and F(S). Tandem MS of the same fragment ions formed in the ion source showed that F(F) carries the hydoxy fatty acid, while F(S) carries the long-chain sphingoid base, thus providing complementary structural information for the characterization of ceramide composition. Based on the tandem mass spectra of the molecular ions M + Na, 26 different GlcCers of the coral were identified. The ceramide moiety showed heterogeneity in both the sphingoid portion (d18:2, d19:2, d20:2 and d20:3) and the alpha-hydroxy fatty acid chain (h19-h24, either saturated or unsaturated), forming an extremely heterogeneous mixture. The method is generally applicable to the characterization of structurally heterogeneous GlcCer mixtures.
我们在此报告从深水地中海树状珊瑚角状树状珊瑚(Dendrophyllia cornigera)中分离出的高度异质的葡萄糖神经酰胺(GlcCers)混合物的结构特征。珊瑚的中性糖鞘脂(GSL)成分被分离为三个高效液相色谱(HPLC)馏分,通过核磁共振(NMR)和质谱(MS)对其进行结构表征。NMR分析揭示了该物种特有的β-吡喃葡萄糖基、甲基支链共轭鞘氨二烯和α-羟基脂肪酸部分。使用单级MS监测HPLC馏分的分子量分布。基于液体二次离子(LSI)扫描光谱中的分子离子峰,观察到至少17种具有可变长链碱基和脂肪酸残基的不同GlcCer成分。通过碱阳离子化分子(M + Cat)的产物离子光谱揭示了各个成分的结构,产生了两个特征性碎片离子F(F)和F(S)。在离子源中形成的相同碎片离子的串联MS表明,F(F)携带羟基脂肪酸,而F(S)携带长链鞘氨醇碱,从而为神经酰胺组成的表征提供了互补的结构信息。基于分子离子M + Na的串联质谱,鉴定出珊瑚中的26种不同GlcCers。神经酰胺部分在鞘氨醇部分(d18:2、d19:2、d20:2和d20:3)和α-羟基脂肪酸链(h19 - h24,饱和或不饱和)中均表现出异质性,形成了极其异质的混合物。该方法通常适用于结构异质的GlcCer混合物的表征。