Identifying Double Bond Positions in Phospholipids Using Liquid Chromatography-Triple Quadrupole Tandem Mass Spectrometry Based on Oxygen Attachment Dissociation.

Q3 Physics and Astronomy
Mass spectrometry Pub Date : 2019-01-01 Epub Date: 2020-01-22 DOI:10.5702/massspectrometry.S0080
Hidenori Takahashi, Yuji Shimabukuro, Daiki Asakawa, Akihito Korenaga, Masaki Yamada, Shinichi Iwamoto, Motoi Wada, Koichi Tanaka
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引用次数: 3

Abstract

Lipids, a class of biomolecules, play a significant role in the physiological system. In this study, gas-phase hydroxyl radicals (OH·) and atomic oxygens (O) were introduced into the collision cell of a triple quadruple mass spectrometer (TQ-MS) to determine the positions of the double bond in unsaturated phospholipids. A microwave-driven compact plasma generator was used as the OH·/O source. The reaction between OH·/O and the precursor ions passing through the collision cell generates product ions that correspond to the double bond positions in the fatty acyl chain. This double bond position specific fragmentation process initiated by the attachment of OH·/O to the double bond of a fatty acyl chain is a characteristic of oxygen attachment dissociation (OAD). A TQ-MS incorporating OAD, in combination with liquid chromatography, permitted a high throughput analysis of the double bond positions in complex biomolecules. It is important to know the precise position of double bonds in lipids, since these molecules can have widely different functionalities based on the position of the double bonds. The assignment of double bond positions in a mixture of eight standard samples of phosphatidylcholines (phospholipids with choline head groups) with multiple saturated fatty acyl chains attached was successfully demonstrated.

Abstract Image

Abstract Image

Abstract Image

基于氧附着解离的液相色谱-三重四极杆串联质谱法鉴定磷脂中的双键位置。
脂类是一类生物分子,在生理系统中起着重要的作用。本研究将气相羟基自由基(OH·)和原子氧(O)引入三联四联质谱仪(TQ-MS)碰撞池,测定不饱和磷脂中双键的位置。采用微波驱动的小型等离子体发生器作为OH·/O源。OH·/O与通过碰撞池的前体离子发生反应,生成与脂肪酸酰基链双键位置相对应的产物离子。这种由OH·/O附着到脂肪酸酰基链的双键上引发的双键位置特定的断裂过程是氧附着解离(OAD)的特征。结合OAD的TQ-MS与液相色谱相结合,可以对复杂生物分子中的双键位置进行高通量分析。知道脂质中双键的精确位置是很重要的,因为这些分子可以根据双键的位置有很大不同的功能。在八个标准样品的磷脂酰胆碱(磷脂与胆碱头基团)与多个饱和脂肪酸酰基链连接的混合物的双键位置的分配成功地证明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mass spectrometry
Mass spectrometry Physics and Astronomy-Instrumentation
CiteScore
1.90
自引率
0.00%
发文量
3
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