Singh Ashutosh, Del Poeta Maurizio
Department of Molecular Genetics and Microbiology, Stony Brook University, Stony BrookNY, USA; Veterans Administration Medical Center, NorthportNY, USA.
Front Microbiol. 2016 Apr 14;7:501. doi: 10.3389/fmicb.2016.00501. eCollection 2016.
Sphingolipids form of a unique and complex group of bioactive lipids in fungi. Structurally, sphingolipids of fungi are quite diverse with unique differences in the sphingoid backbone, amide linked fatty acyl chain and the polar head group. Two of the most studied and conserved sphingolipid classes in fungi are the glucosyl- or galactosyl-ceramides and the phosphorylinositol containing phytoceramides. Comprehensive structural characterization and quantification of these lipids is largely based on advanced analytical mass spectrometry based lipidomic methods. While separation of complex lipid mixtures is achieved through high performance liquid chromatography, the soft - electrospray ionization tandem mass spectrometry allows a high sensitivity and selectivity of detection. Herein, we present an overview of lipid extraction, chromatographic separation and mass spectrometry employed in qualitative and quantitative sphingolipidomics in fungi.
鞘脂类在真菌中构成了一类独特而复杂的生物活性脂质。在结构上,真菌的鞘脂类非常多样,在鞘氨醇主链、酰胺连接的脂肪酰基链和极性头部基团方面存在独特差异。真菌中研究最多且最保守的两类鞘脂是葡萄糖基或半乳糖基神经酰胺以及含磷酸肌醇的植物神经酰胺。这些脂质的全面结构表征和定量主要基于先进的基于分析质谱的脂质组学方法。虽然通过高效液相色谱可实现复杂脂质混合物的分离,但软电喷雾电离串联质谱可实现高灵敏度和高选择性检测。在此,我们概述了用于真菌鞘脂组学定性和定量分析的脂质提取、色谱分离和质谱方法。