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Elucidation and identification of amino acid containing membrane lipids using liquid chromatography/high-resolution mass spectrometry

机译:使用液相色谱/高分辨率质谱法对含有脂质的氨基酸进行鉴别和鉴定

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摘要

RATIONALE: Intact polar lipids (IPLs) are the building blocks of cell membranes, and amino acid containing IPLs havebeen observed to be involved in response to changing environmental conditions in various species of bacteri a. High-performance liquid chromatography/mass spectrometry (HPLC/MS) has become the primary method for analysis ofIPLs. Many glycerol-free amino acid containing membrane lipids (AA-IPLs), which are structurally different thanabundant aminophospholipids, have not been characterized using HPLC/MS. This results in many lipids remainingunrecognized in IPL analysis of microbial cultures and environmental samples, hampering the study of their occurrenceand functionality.METHODS: We analyzed the amino acid containing IPLs of a number of bacteria (i.e. Gluconobacter cerinus,Cyclobacterium marinus, Rhodobacter sphaeroides,andPedobacter heparinus) in order to decipher fragmentation pathways,and explore potential novel lipid structures using HPLC/electrospray ionizati on ion trap MS (HPLC/ESI-IT-MS) andHPLC/high-resolution MS (HPLC/HRMS).RESULTS: We report differentiation between glutamine and lysine lipids with the same nominal masses, novel MSfragmentation pathways of cytolipin, the lipopeptides cerilipin and ?avolipin, head group hydroxylated ornithine lipids,and the novel identi?cation of cerilipin with a hydroxylated fatty acid.CONCLUSIONS: Non-glycerol AA lipids can be readily recognized as their fragmentation follows a clear pattern withinitial dehydration or other loss from the head group, followed by fatty acid losses resulting in a diagnostic fragmention. Higher level MSnand HRMS are valuable tools in characterizing AA lipid head group structural components.
机译:理由:完整的极性脂质(IPL)是细胞膜的组成部分,并且已观察到含有氨基酸的IPL参与了各种细菌a对变化的环境条件的响应。高效液相色谱/质谱(HPLC / MS)已成为分析IPL的主要方法。许多结构上与丰富的氨基磷脂不同的不含甘油的氨基酸的膜脂质(AA-IPL)尚未使用HPLC / MS进行表征。结果导致许多脂质在微生物培养物和环境样品的IPL分析中仍然无法识别,从而阻碍了它们的发生和功能的研究。肝素)以破译碎裂途径,并在离子阱质谱(HPLC / ESI-IT-MS)和高效液相色谱/高分辨率质谱(HPLC / HRMS)上使用HPLC /电喷雾电离技术探索潜在的新型脂质结构。结论:非甘油AA脂质很容易被识别,因为它们的碎片遵循清晰的模式,在最初的脱水或其他损失中ead组,随后脂肪酸损失,导致诊断性断裂。较高水平的MSn和HRMS是表征AA脂质头基结构成分的宝贵工具。

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