Université de Bordeaux, Chimie Biologie des Membranes et Nanoobjets CBMN-UMR 5248, Centre de Génomique Fonctionnelle Université Bordeaux 2, Bordeaux, France.
Rapid Commun Mass Spectrom. 2011 Oct 30;25(20):3131-45. doi: 10.1002/rcm.5206.
The structural characterization of Glycosyl-Inositol-Phospho-Ceramides (GIPCs), which are the main sphingolipids of plant tissues, is a critical step towards the understanding of their physiological function. After optimization of their extraction, numerous plant GIPCs have been characterized by mass spectrometry. Matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) full scan analysis of negative ions provides a quick overview of GIPC distribution. Clear differences were observed for the two plant models studied: six GIPC series bearing from two to seven saccharide units were detected in tobacco BY-2 cell extracts, whereas GIPCs extracted from A. thaliana cell cultures and leaves were less diverse, with a dominance of species containing only two saccharide units. The number of GIPC species was around 50 in A. thaliana and 120 in tobacco BY-2 cells. MALDI-MS/MS spectra gave access to detailed structural information relative to the ceramide moiety, the polar head, as well as the number and types of saccharide units. Once released from GIPCs, fatty acid chains and long-chain bases were analyzed by GC/MS to verify that all GIPC series were taken into account by the MALDI-MS/MS approach. ESI-MS/MS provided complementary information for the identification of isobaric species and fatty acid chains. Such a methodology, mostly relying on MALDI-MS/MS, should open new avenues to determine structure-function relationships between glycosphingolipids and membrane organization.
糖基肌醇磷脂酰神经酰胺(GIPC)是植物组织中主要的鞘脂类化合物,对其结构进行表征是理解其生理功能的关键步骤。经过优化提取方法后,已通过质谱法对许多植物 GIPC 进行了表征。负离子基质辅助激光解吸/电离质谱(MALDI-MS)全扫描分析可快速概述 GIPC 的分布。对所研究的两种植物模型观察到明显差异:在烟草 BY-2 细胞提取物中检测到六种含有两个到七个糖基单元的 GIPC 系列,而从拟南芥细胞培养物和叶片中提取的 GIPC 则种类较少,仅含有两个糖基单元的物种占主导地位。在拟南芥中 GIPC 种类约为 50 种,在烟草 BY-2 细胞中约为 120 种。MALDI-MS/MS 谱可提供有关神经酰胺部分、极性头部以及糖基单元数量和类型的详细结构信息。从 GIPC 释放出脂肪酸链和长链碱基后,通过 GC/MS 进行分析,以验证 MALDI-MS/MS 方法考虑了所有 GIPC 系列。ESI-MS/MS 为鉴定等质物种和脂肪酸链提供了补充信息。这种主要依赖 MALDI-MS/MS 的方法应该为确定糖脂与膜组织之间的结构-功能关系开辟新途径。