Shaner Rebecca L, Allegood Jeremy C, Park Hyejung, Wang Elaine, Kelly Samuel, Haynes Christopher A, Sullards M Cameron, Merrill Alfred H
Schools of Chemistry and Biochemistry, Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, GA 30332-0230, USA
J Lipid Res. 2009 Aug;50(8):1692-707. doi: 10.1194/jlr.D800051-JLR200. Epub 2008 Nov 25.
Sphingolipids are a highly diverse category of bioactive compounds. This article describes methods that have been validated for the extraction, liquid chromatographic (LC) separation, identification and quantitation of sphingolipids by electrospray ionization, tandem mass spectrometry (ESI-MS/MS) using triple quadrupole (QQQ, API 3000) and quadrupole-linear-ion trap (API 4000 QTrap, operating in QQQ mode) mass spectrometers. Advantages of the QTrap included: greater sensitivity, similar ionization efficiencies for sphingolipids with ceramide versus dihydroceramide backbones, and the ability to identify the ceramide backbone of sphingomyelins using a pseudo-MS3 protocol. Compounds that can be readily quantified using an internal standard cocktail developed by the LIPID MAPS Consortium are: sphingoid bases and sphingoid base 1-phosphates, more complex species such as ceramides, ceramide 1-phosphates, sphingomyelins, mono- and di-hexosylceramides, and these complex sphingolipids with dihydroceramide backbones. With minor modifications, glucosylceramides and galactosylceramides can be distinguished, and more complex species such as sulfatides can also be quantified, when the internal standards are available. LC ESI-MS/MS can be utilized to quantify a large number of structural and signaling sphingolipids using commercially available internal standards. The application of these methods is illustrated with RAW264.7 cells, a mouse macrophage cell line. These methods should be useful for a wide range of focused (sphingo)lipidomic investigations.
鞘脂是一类高度多样化的生物活性化合物。本文介绍了已通过使用三重四极杆(QQQ,API 3000)和四极杆 - 线性离子阱(API 4000 QTrap,工作于QQQ模式)质谱仪的电喷雾电离串联质谱法(ESI - MS/MS)对鞘脂进行提取、液相色谱(LC)分离、鉴定和定量的方法。QTrap的优点包括:更高的灵敏度、具有神经酰胺与二氢神经酰胺骨架的鞘脂具有相似的电离效率,以及能够使用伪MS3方案鉴定鞘磷脂的神经酰胺骨架。使用脂质代谢组学联盟开发的内标混合物可以轻松定量的化合物有:鞘氨醇碱和鞘氨醇碱1 - 磷酸酯、更复杂的物种如神经酰胺、神经酰胺1 - 磷酸酯、鞘磷脂、单糖基和二糖基神经酰胺,以及这些具有二氢神经酰胺骨架的复杂鞘脂。经过微小修改,当有内标时,可以区分葡萄糖基神经酰胺和半乳糖基神经酰胺,并且也可以对更复杂的物种如硫脂进行定量。LC ESI - MS/MS可用于使用市售内标定量大量结构和信号鞘脂。以RAW264.7细胞(一种小鼠巨噬细胞系)为例说明了这些方法的应用。这些方法对于广泛的聚焦(鞘)脂质组学研究应该是有用的。