Institute of Bioanalytical Chemistry, Faculty of Chemistry and Mineralogy, University of Leipzig, 04013, Leipzig, Germany.
Center for Biotechnology and Biomedicine, University of Leipzig, 04013, Leipzig, Germany.
Nat Commun. 2022 Nov 1;13(1):6547. doi: 10.1038/s41467-022-33225-9.
Lipids are a structurally diverse class of biomolecules which can undergo a variety of chemical modifications. Among them, lipid (per)oxidation attracts most of the attention due to its significance in the regulation of inflammation, cell proliferation and death programs. Despite their apparent regulatory significance, the molecular repertoire of oxidized lipids remains largely elusive as accurate annotation of lipid modifications is complicated by their low abundance and often unknown, biological context-dependent structural diversity. Here, we provide a workflow based on the combination of bioinformatics and LC-MS/MS technologies to support identification and relative quantification of oxidized complex lipids in a modification type- and position-specific manner. The developed methodology is used to identify epilipidomics signatures of lean and obese individuals with and without type 2 diabetes. The characteristic signature of lipid modifications in lean individuals, dominated by the presence of modified octadecanoid acyl chains in phospho- and neutral lipids, is drastically shifted towards lipid peroxidation-driven accumulation of oxidized eicosanoids, suggesting significant alteration of endocrine signalling by oxidized lipids in metabolic disorders.
脂质是一类结构多样的生物分子,可发生多种化学修饰。其中,脂质(过)氧化吸引了最多的关注,因为它在炎症、细胞增殖和死亡程序的调节中具有重要意义。尽管它们具有明显的调节意义,但由于脂质修饰的丰度低且通常未知,且具有依赖于生物背景的结构多样性,因此氧化脂质的分子谱仍然很大程度上难以捉摸。在这里,我们提供了一种基于生物信息学和 LC-MS/MS 技术组合的工作流程,以支持以修饰类型和位置特异性的方式鉴定和相对定量氧化的复杂脂质。所开发的方法学用于鉴定 2 型糖尿病和非糖尿病瘦型和肥胖个体的类花生酸组学特征。瘦型个体的脂质修饰特征主要由磷酸化和中性脂质中存在修饰的十八碳烯酰链主导,这种特征明显向由脂质过氧化驱动的氧化类二十烷酸的积累转变,表明在代谢紊乱中,氧化脂质对内分泌信号的显著改变。