Mass Spectrometry Resource, Division of Endocrinology, Diabetes, Metabolism, and Lipid Research, Department of Internal Medicine, Washington University School of Medicine, St. Louis, MO 63110, United States.
Anal Chim Acta. 2013 Apr 10;771:73-85. doi: 10.1016/j.aca.2013.02.010. Epub 2013 Feb 18.
The structures of archaeal glycerophospholipids and glycolipids are unique in that they consist of phytanyl substituents ether linked to the glycerol backbone, imparting stability to the molecules. In this contribution, we described multiple-stage linear ion-trap combined with high resolution mass spectrometry toward structural characterization of this lipid family desorbed as lithiated adduct ions or as the M-H and M-2H ions by ESI. MS(n) on various forms of the lithiated adduct ions yielded rich structurally informative ions leading to complete structure identification of this lipid family, including the location of the methyl branches of the phytanyl chain. By contrast, structural information deriving from MS(n) on the M-H and M-2H ions is not complete. The fragmentation pathways in an ion-trap, including unusual internal loss of glycerol moiety and internal loss of hexose found for this lipid family were proposed. This mass spectrometric approach provides a simple tool to facilitate confident characterization of this unique lipid family.
古菌甘油磷脂和糖脂的结构很独特,它们由植烷取代基通过醚键连接到甘油主链上,从而使分子稳定。在本研究中,我们描述了多级线性离子阱结合高分辨质谱,通过电喷雾将这些作为与锂离子结合的加合物离子或以 M-H 和 M-2H 离子形式解吸的脂质家族进行结构表征。各种形式的锂离子加合物离子的 MS(n) 产生了丰富的结构信息离子,从而完全确定了该脂质家族的结构,包括植烷链甲基支链的位置。相比之下,从 M-H 和 M-2H 离子的 MS(n) 获得的结构信息并不完整。提出了在离子阱中包括异常的甘油部分的内部损失和发现的该脂质家族的内部损失的碎裂途径。这种质谱方法提供了一种简单的工具,可用于确认鉴定这种独特的脂质家族。