Green Courtney R, Kolar Matthew J, McGregor Grace H, Nelson Andrew T, Wallace Martina, Metallo Christian M
Molecular and Cellular Biology Laboratory, The Salk Institute for Biological Studies, CA, USA.
Molecular and Cellular Biology Laboratory, The Salk Institute for Biological Studies, CA, USA; Department of Dermatology, University of California, San Diego, CA, USA.
J Lipid Res. 2024 Dec;65(12):100677. doi: 10.1016/j.jlr.2024.100677. Epub 2024 Oct 26.
Compound lipids comprise a diverse group of metabolites present in living systems, and metabolic- and environmentally-driven structural distinctions across this family are increasingly linked to biological function. However, methods for deconvoluting these often isobaric lipid species are lacking or require specialized instrumentation. Notably, acyl-chain diversity within cells may be influenced by nutritional states, metabolic dysregulation, or genetic alterations. Therefore, a reliable, validated method of quantifying structurally similar even-, odd-, and branched-chain acyl groups within intact compound lipids will be invaluable for gaining molecular insights into their biological functions. Here we demonstrate the chromatographic resolution of isobaric lipids containing distinct combinations of straight-chain and branched-chain acyl groups via ultra-high-pressure liquid chromatography (UHPLC)-mass spectrometry (MS) using a C30 liquid chromatography column. Using metabolically engineered adipocytes lacking branched-keto acid dehydrogenase A (Bckdha), we validate this approach through a combination of fatty acid supplementation and metabolic tracing using monomethyl branched-chain fatty acids and valine. We observe the resolution of numerous isobaric triacylglycerols and other compound lipids, demonstrating the resolving utility of this method. This approach adds to the toolbox for laboratories to quantify and characterize acyl chain diversity across the lipidome.
复合脂质包含存在于生物系统中的多种代谢物,并且该家族中由代谢和环境驱动的结构差异与生物学功能的联系日益紧密。然而,用于解卷积这些通常为等压脂质种类的方法尚缺,或者需要专门的仪器设备。值得注意的是,细胞内的酰基链多样性可能受营养状态、代谢失调或基因改变的影响。因此,一种可靠、经过验证的方法,用于定量完整复合脂质中结构相似的偶数、奇数和支链酰基,对于深入了解其生物学功能的分子机制将具有极高价值。在此,我们展示了通过使用C30液相色谱柱的超高压液相色谱(UHPLC)-质谱(MS),对含有直链和支链酰基不同组合的等压脂质进行色谱分离。利用缺乏支链酮酸脱氢酶A(Bckdha)的代谢工程改造脂肪细胞,我们通过补充脂肪酸和使用单甲基支链脂肪酸及缬氨酸进行代谢示踪相结合的方式验证了该方法。我们观察到众多等压三酰甘油和其他复合脂质的分离效果,证明了该方法的分离效用。这种方法为实验室量化和表征脂质组中的酰基链多样性增添了工具。