Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907-2084, United States.
Department of Chemistry and Institute of Biochemistry, Carleton University, 1125 Colonel By Drive, Ottawa, Ontario K1S 5B6, Canada.
J Am Soc Mass Spectrom. 2020 Apr 1;31(4):938-945. doi: 10.1021/jasms.0c00001. Epub 2020 Mar 2.
Shotgun lipidomics provides sensitive and fast lipid identification without the need for chromatographic separation. Challenges faced by shotgun analysis of glycerophospholipids (GPs) include the lack of signal uniformity across GP classes and the inability to determine the carbon-carbon double bond (C═C) location within the fatty acyl chains of an unsaturated species. Two distinct derivatization strategies were employed to both enhance the ionization of GPs, via trimethylation enhancement using C-diazomethane (C-TrEnDi), as well as determine location of double bonds within fatty acyl chains, employing an in-solution photochemical reaction with acetone (via the Paternò-Büchi reaction). The modified GPs were then subjected to positive ion mode ionization via electrospray ionization, producing uniform ionization efficiencies for different classes of GP species. The GPs were charge inverted via gas-phase ion/ion reactions and sequentially fragmented using ion trap collision-induced dissociation (CID). The CID of the species led to fragmentation producing diagnostic ions indicative of C═C bond location. The approach enabled enhanced ionization and the identification of phosphatidylcholine and phosphatidylethanolamine species at the C═C level in a bovine lipid extract.
shotgun 脂质组学提供了灵敏快速的脂质鉴定,而无需进行色谱分离。shotgun 分析甘油磷脂 (GPs) 时面临的挑战包括缺乏跨 GP 类别的信号均匀性,以及无法确定不饱和物种的脂肪酸链中碳-碳双键 (C═C) 的位置。采用了两种不同的衍生化策略来增强 GPs 的离子化,通过使用 C-重氮甲烷 (C-TrEnDi) 进行三甲基化增强,以及通过与丙酮的溶液光化学反应 (通过 Paternò-Büchi 反应) 来确定双键在脂肪酸链中的位置。然后通过电喷雾电离将修饰的 GPs 置于正离子模式下进行电离,从而为不同类别的 GP 物质产生均匀的电离效率。通过气相离子/离子反应将 GPs 电荷反转,然后使用离子阱碰撞诱导解离 (CID) 进行顺序片段化。该物质的 CID 导致产生了表明 C═C 键位置的诊断离子的片段化。该方法能够增强在牛脂提取物中在 C═C 水平上鉴定磷脂酰胆碱和磷脂酰乙醇胺物质的离子化。