CEMBIO, Centre for Metabolomics and Bioanalysis (CEMBIO), Facultad de Farmacia, Universidad CEU San Pablo, Campus Montepríncipe, Boadilla Del Monte, 28668, Madrid, Spain; Department of Information Technology, Universidad CEU San Pablo, Campus Montepríncipe, Boadilla Del Monte, Madrid, Spain.
CEMBIO, Centre for Metabolomics and Bioanalysis (CEMBIO), Facultad de Farmacia, Universidad CEU San Pablo, Campus Montepríncipe, Boadilla Del Monte, 28668, Madrid, Spain.
Anal Chim Acta. 2018 Dec 11;1037:358-368. doi: 10.1016/j.aca.2018.08.005. Epub 2018 Aug 7.
The biological role of oxidized glycerophosphocholines (oxPCs) is a current topic of research importantly contributing to the understanding of health and disease. Global non-targeted metabolomics offers an interesting approach to expand current knowledge and link oxPCs to new biological functions. Although this strategy is successful, it also has some limitations which are clearly noticeable during the identification process. For this reason, clear rules related to the identification of each group of metabolites are needed. This work attempts to provide the reader with a guideline for the recognition and annotation of oxidation among phosphocholines (PCs). Using several chromatographic characteristics and spectral information from tandem mass spectrometry, rapid and reliable annotation of long and short chain oxPCs can be performed. Some of this knowledge has been implemented in the publicly available annotation tool 'CEU Mass Mediator' (CMM) for semi-automated assignment of oxidation. Additionally, this tool was supplemented with accurate monoisotopic masses of oxPCs, expanding current information in other databases. Moreover, the characterization of oxidization products of PC(16:0/20:4) known as PAPC has been performed, providing a list of accurate mass product ions and neutral losses.
氧化甘油磷酸胆碱(oxPCs)的生物学作用是当前研究的一个重要课题,有助于理解健康和疾病。全球非靶向代谢组学提供了一种有趣的方法来扩展现有知识,并将 oxPCs 与新的生物学功能联系起来。尽管这种策略是成功的,但在鉴定过程中也存在一些明显的局限性。因此,需要明确与鉴定每组代谢物相关的规则。这项工作旨在为读者提供一种识别和注释磷酸胆碱(PCs)氧化的指南。使用几种色谱特征和串联质谱的光谱信息,可以快速可靠地注释长链和短链 oxPCs。其中一些知识已在公开的注释工具“CEU Mass Mediator”(CMM)中实现,用于半自动化分配氧化。此外,该工具还补充了 oxPCs 的准确单同位素质量,扩展了其他数据库中的现有信息。此外,还对 PC(16:0/20:4)的氧化产物 PAPC 进行了表征,提供了准确质量产物离子和中性损失的列表。