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基于多维质谱的乙烯基醚甘油二酯鸟枪法脂质组学分析。

Multidimensional mass spectrometry-based shotgun lipidomics analysis of vinyl ether diglycerides.

作者信息

Yang Kui, Jenkins Christopher M, Dilthey Beverly, Gross Richard W

机构信息

Division of Bioorganic Chemistry and Molecular Pharmacology, Department of Medicine, Washington University School of Medicine, St. Louis, MO, 63110, USA.

出版信息

Anal Bioanal Chem. 2015 Jul;407(17):5199-210. doi: 10.1007/s00216-015-8640-3. Epub 2015 Mar 31.

Abstract

Diglycerides play a central role in lipid metabolism and signaling in mammalian cells. Although diacylglycerol molecular species comprise the majority of cellular diglycerides that are commonly measured using a variety of approaches, identification of extremely low abundance vinyl ether diglycerides has remained challenging. In this work, representative molecular species from the three diglyceride subclasses (diacyl, vinyl ether, and alkyl ether diglycerides; hereafter referred to as diradylglycerols) were interrogated by mass spectrometric analysis. Product ion mass spectra of the synthesized diradylglycerols with varied chain lengths and degrees of unsaturation demonstrated diagnostic fragmentation patterns indicative of each subclass. Multidimensional mass spectrometry-based shotgun lipidomics (MDMS-SL) analysis of mouse brain and heart lipid extracts were performed using the identified informative signature product ions. Through an array of tandem mass spectrometric analyses utilizing the orthogonal characteristics of neutral loss scanning and precursor ion scanning, the differential fragmentation of each subclass was exploited for high-yield structural analyses. Although molecular ion mass spectra readily identified diacylglycerol molecular species directly from the hexane fractions of tissue extracts enriched in nonpolar lipids, molecular ion peaks corresponding to ether-linked diglycerides were not observable. The power of MDMS-SL utilizing the tandem mass spectrometric array analysis was demonstrated by identification and profiling of individual molecular species of vinyl ether diglycerides in mouse brain and heart from their undetectable molecular ion peaks during MS(1) analysis. Collectively, this technology enabled the identification and profiling of previously inaccessible vinyl ether diglyceride molecular species in mammalian tissues directly from extracts of biologic tissues.

摘要

甘油二酯在哺乳动物细胞的脂质代谢和信号传导中起着核心作用。尽管二酰基甘油分子种类构成了细胞甘油二酯的大部分,这些甘油二酯通常使用多种方法进行测量,但鉴定极低丰度的乙烯基醚甘油二酯仍然具有挑战性。在这项工作中,通过质谱分析对来自三个甘油二酯亚类(二酰基、乙烯基醚和烷基醚甘油二酯;以下简称双自由基甘油)的代表性分子种类进行了研究。合成的具有不同链长和不饱和度的双自由基甘油的产物离子质谱显示出指示每个亚类的诊断性碎裂模式。使用鉴定出的信息性特征产物离子对小鼠脑和心脏脂质提取物进行基于多维质谱的鸟枪法脂质组学(MDMS-SL)分析。通过一系列利用中性丢失扫描和前体离子扫描的正交特性的串联质谱分析,利用每个亚类的差异碎裂进行高产率结构分析。尽管分子离子质谱很容易直接从富含非极性脂质的组织提取物的己烷馏分中鉴定出二酰基甘油分子种类,但对应于醚连接的甘油二酯的分子离子峰却无法观察到。通过对小鼠脑和心脏中乙烯基醚甘油二酯的单个分子种类进行鉴定和分析,证明了利用串联质谱阵列分析的MDMS-SL的能力,这些分子种类在MS(1)分析中其分子离子峰无法检测到。总的来说,这项技术能够直接从生物组织提取物中鉴定和分析哺乳动物组织中以前无法获得的乙烯基醚甘油二酯分子种类。

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