Department of Chemistry - BMC (576), Uppsala University, 751 23, Uppsala, Sweden.
Anal Bioanal Chem. 2022 Oct;414(25):7473-7482. doi: 10.1007/s00216-022-04173-6. Epub 2022 Jun 22.
Glycerophospholipids are one of the fundamental building blocks for life. The acyl chain connectivity to the glycerol backbone constitutes different sn-positional isomers, which have great diversity and importance for biological function. However, to fully realize their impact on function, analytical techniques that can identify and quantify sn-positional isomers in chemically complex biological samples are needed. Here, we utilize silver ion cationization in combination with tandem mass spectrometry (MS) to identify sn-positional isomers of phosphatidylcholine (PC) species. In particular, a labile carbocation is generated through a neutral loss (NL) of AgH, the dissociation of which provides diagnostic product ions that correspond to acyl chains at the sn-1 or sn-2 position. The method is comparable to currently available methods, has a sensitivity in the nM-µM range, and is compatible with quantitative imaging using mass spectrometry in MS. The results reveal a large difference in isomer concentrations and the ion images show that the sn-positional isomers PC 18:1_18:0 are homogeneously distributed, whereas PC 18:1_16:0 and PC 20:1_16:0 show distinct localizations to sub-hippocampal structures.
甘油磷脂是生命的基本组成部分之一。酰基链与甘油主链的连接构成了不同的 sn-位置异构体,这些异构体在生物功能方面具有很大的多样性和重要性。然而,为了充分认识它们对功能的影响,需要能够在化学复杂的生物样品中识别和定量 sn-位置异构体的分析技术。在这里,我们利用银离子阳离子化与串联质谱 (MS) 相结合来鉴定磷脂酰胆碱 (PC) 物种的 sn-位置异构体。特别是,通过 AgH 的中性损失 (NL) 生成不稳定的碳正离子,其解离提供与 sn-1 或 sn-2 位置的酰基链相对应的诊断产物离子。该方法与现有的方法相当,具有 nM-µM 范围内的灵敏度,并且与 MS 中使用质谱进行定量成像兼容。结果表明异构体浓度存在很大差异,离子图像表明 sn-位置异构体 PC 18:1_18:0 均匀分布,而 PC 18:1_16:0 和 PC 20:1_16:0 则明显定位于海马下结构。