Institute of Food Chemistry, Westfälische Wilhelms-Universität Münster, Münster, Germany.
J Agric Food Chem. 2013 May 8;61(18):4257-69. doi: 10.1021/jf4001499. Epub 2013 Apr 29.
Glycosyl inositol phosphoceramides (GIPC) are the main sphingolipids in plants, and optimization of their extraction and detection is still in the focus of research. Mass spectrometry provides new options for the analysis and structural elucidation of this complex class of lipids. The coupling of linear ion trap and orbitrap (LTQ Orbitrap) enabled various fragmentation experiments (MS(2), MS(3)) by collision-induced dissociation (CID) and pulsed-Q dissociation (PQD). For structural analysis, GIPC-fragment ions were detected in the positive and negative ion mode with exact masses; therefore, fragmentation patterns were observed and finally structures have been characterized regarding polar head group, fatty acid, and sphingoid base. GIPC profiling was performed for spinach, white cabbage, sunflower seeds, and soybeans. The total GIPC concentration in these plants ranged from 1.1 to 88.4 μg/100 g dry weight with t18:1/h24:0 as the main ceramide structure and hexose-hexuronic acid-inositol phosphate and N-acetylhexosamine-hexuronic acid-inositol phosphate as polar head groups.
糖基肌醇磷神经酰胺(GIPC)是植物中主要的神经鞘脂类,其提取和检测的优化仍然是研究的重点。质谱法为分析和结构阐明这类复杂脂质提供了新的选择。线性离子阱和轨道阱(LTQ Orbitrap)的耦合通过碰撞诱导解离(CID)和脉冲 Q 解离(PQD)实现了各种碎裂实验(MS(2)、MS(3))。为了进行结构分析,在正离子和负离子模式下通过精确质量检测到 GIPC 片段离子;因此,观察到了碎裂模式,并最终根据极性头基团、脂肪酸和神经酰胺碱基对结构进行了表征。对菠菜、白菜、葵花籽和大豆进行了 GIPC 分析。这些植物中的总 GIPC 浓度范围为 1.1 至 88.4 μg/100 g 干重,其中 t18:1/h24:0 作为主要的神经酰胺结构,极性头基团为己糖-己糖醛酸-肌醇磷酸和 N-乙酰己糖胺-己糖醛酸-肌醇磷酸。