School of Chemistry, University of Melbourne, Melbourne, VIC, 3010, Australia.
Department of Biochemistry and Molecular Biology, University of Melbourne, Melbourne, VIC, 3010, Australia.
Anal Bioanal Chem. 2020 Apr;412(10):2339-2351. doi: 10.1007/s00216-020-02446-6. Epub 2020 Jan 31.
Fatty acids are a major source of structural diversity within the lipidome due to variations in their acyl chain lengths, branching, and cyclization, as well as the number, position, and stereochemistry of double bonds within their mono- and poly-unsaturated species. Here, the utility of 193 nm UltraViolet PhotoDissociation tandem mass spectrometry (UVPD-MS/MS) has been evaluated for the detailed structural characterization of a series of unsaturated fatty acid lipid species. UVPD-MS/MS of unsaturated fatty acids is shown to yield pairs of unique diagnostic product ions resulting from cleavages adjacent to their C=C double bonds, enabling unambiguous localization of the site(s) of unsaturation within these lipids. The effect of several experimental variables on the observed fragmentation behaviour and UVPD-MS/MS efficiency, including the position and number of double bonds, the effect of conjugated versus non-conjugated double bonds, the number of laser pulses, and the influence of alkali metal cations (Li, Na, K) as the ionizing adducts, has been evaluated. Importantly, the abundance of the diagnostic ions is shown to enable relative quantitation of mixtures of fatty acid isomers across a range of molar ratios. Finally, the practical application of 193 nm UVPD-MS/MS is demonstrated via characterization of changes in the ratios of fatty acid double bond positional isomers in isogenic colorectal cancer cell lines. This study therefore demonstrates the practicality of UVPD-MS/MS for the structural characterization of fatty acid isomers in lipidome analysis workflows.
脂肪酸是脂质组中结构多样性的主要来源,这是由于其酰基链长度、分支和环化的变化,以及其单不饱和和多不饱和物种中双键的数量、位置和立体化学的变化。在这里,评估了 193nm 紫外光光解串联质谱(UVPD-MS/MS)在一系列不饱和脂肪酸脂质物种的详细结构表征中的应用。结果表明,不饱和脂肪酸的 UVPD-MS/MS 产生了来自其 C=C 双键附近裂解的一对独特的诊断产物离子,能够明确确定这些脂质中不饱和的位置。研究了几个实验变量对观察到的裂解行为和 UVPD-MS/MS 效率的影响,包括双键的位置和数量、共轭和非共轭双键的影响、激光脉冲的数量以及作为电离加合物的碱金属阳离子(Li、Na、K)的影响。重要的是,所得到的诊断离子的丰度可用于相对定量摩尔比范围内的脂肪酸异构体混合物。最后,通过表征同基因结直肠癌细胞系中脂肪酸双键位置异构体比例的变化,展示了 193nm UVPD-MS/MS 在脂质组分析工作流程中用于脂肪酸异构体结构表征的实际应用。因此,本研究证明了 UVPD-MS/MS 在脂质组分析工作流程中用于脂肪酸异构体结构表征的实用性。