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采用鸟枪法脂质组学分析脑样本中的单己糖基烷基(烯基)-酰基甘油

Analysis of monohexosyl alkyl (alkenyl)-acyl glycerol in brain samples by shotgun lipidomics.

作者信息

Wang Chunyan, Wang Jianing, Qin Chao, Han Xianlin

机构信息

Barshop Institute for Longevity and Aging Studies, San Antonio, TX, 78229, USA.

Barshop Institute for Longevity and Aging Studies, San Antonio, TX, 78229, USA; Department of Medicine - Diabetes, University of Texas Health Science Center at San Antonio, San Antonio, TX, 78229, USA.

出版信息

Anal Chim Acta. 2020 Sep 8;1129:143-149. doi: 10.1016/j.aca.2020.07.016. Epub 2020 Jul 24.

Abstract

Lipid species possess very different structures, leading to their very diversified cellular functions in biological systems. Lipidomics represents a powerful technology for deep analysis of hundreds to thousands of intact lipid molecular species. In the current study, a cluster of unknown ion peaks was displayed when we profiled cerebroside species in rat spinal cord samples by neutral loss scan of 162 Da in the positive ion mode using a multi-dimensional mass spectrometry-based shotgun lipidomics strategy. In order to identify the structural identities of these unknown ion peaks, MS and MS analyses of these ions were performed by high mass resolution mass spectrometry. Extensive lines of evidence allowed us to identify that these unknown ion peaks were monohexosyl alkyl-acyl glycerol (HAAG) species, including their sn-positional isomers and alkyl-acyl compositional isomers. We also applied the developed method to identify and quantify HAAG species present in a variety of mouse nerve tissues. We believe that the first kind of lipidomics study on HAAG species present in mammalian nerve tissue samples provided the foundation for future biological research in this unknown area.

摘要

脂质种类具有非常不同的结构,这导致它们在生物系统中具有极其多样化的细胞功能。脂质组学是一种强大的技术,可用于深入分析数百至数千种完整的脂质分子种类。在本研究中,当我们使用基于多维质谱的鸟枪法脂质组学策略,在正离子模式下通过162 Da的中性丢失扫描对大鼠脊髓样本中的脑苷脂种类进行分析时,出现了一组未知离子峰。为了确定这些未知离子峰的结构特征,通过高分辨率质谱对这些离子进行了质谱和二级质谱分析。大量证据使我们能够确定这些未知离子峰是单己糖基烷基酰基甘油(HAAG)种类,包括它们的sn-位置异构体和烷基酰基组成异构体。我们还应用所开发的方法来鉴定和定量存在于多种小鼠神经组织中的HAAG种类。我们相信,对哺乳动物神经组织样本中存在的HAAG种类进行的首次脂质组学研究为该未知领域的未来生物学研究奠定了基础。

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