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一种用于监测异构甘油磷脂相对丰度的快速常压电离质谱方法。

A rapid ambient ionization-mass spectrometry approach to monitoring the relative abundance of isomeric glycerophospholipids.

作者信息

Kozlowski Rachel L, Mitchell Todd W, Blanksby Stephen J

机构信息

1] School of Chemistry, University of Wollongong, Wollongong, NSW, 2522, Australia [2] Illawarra Health and Medical Research Institute (IHMRI), University of Wollongong, Wollongong, NSW, 2522, Australia.

1] Illawarra Health and Medical Research Institute (IHMRI), University of Wollongong, Wollongong, NSW, 2522, Australia [2] School of Health Sciences, University of Wollongong, Wollongong, NSW, 2522, Australia.

出版信息

Sci Rep. 2015 Apr 2;5:9243. doi: 10.1038/srep09243.

Abstract

Glycerophospholipids with two, non-equivalent fatty acyl chains can adopt one of two isomeric forms depending on the relative position of substitutions on the glycerol backbone. These so-called sn-positional isomers can have distinct biophysical and biochemical behaviors making it desirable to uniquely assign their regiochemistries. Unambiguous assignment of such similar molecular structures in complex biological extracts is a significant challenge to current analytical technologies. We have recently reported a novel mass spectrometric method that combines collision- and ozone-induced dissociation in series (CID/OzID) to yield product ions characteristic of acyl chain substitution patterns in glycerophospholipids. Here phosphatidylcholines are examined using the CID/OzID protocol combined with desorption electrospray ionization (DESI) to facilitate the rapid exploration of sample arrays comprised of a wide variety of synthetic and biological sources. Comparison of the spectra acquired from different extracts reveals that the sn-positional isomers PC 16:0/18:1 and PC 18:1/16:0 (where the 18:1 chain is present at the sn-2 and sn-1 position of the glycerol backbone, respectively) are most often found together in lipids of either natural or synthetic origin. Moreover, the proportions of the two isomers vary significantly between extracts from different organisms or even between adjacent tissues from the same organism.

摘要

具有两条不等价脂肪酰基链的甘油磷脂可根据甘油主链上取代基的相对位置采用两种异构体形式之一。这些所谓的sn-位置异构体可能具有不同的生物物理和生化行为,因此需要唯一地确定它们的区域化学结构。在复杂生物提取物中明确指定此类相似分子结构对当前分析技术而言是一项重大挑战。我们最近报道了一种新颖的质谱方法,该方法将串联碰撞诱导解离和臭氧诱导解离(CID/OzID)相结合,以产生甘油磷脂中酰基链取代模式的特征性产物离子。在此,使用CID/OzID方案结合解吸电喷雾电离(DESI)对磷脂酰胆碱进行研究,以促进对由各种合成和生物来源组成的样品阵列的快速探索。对不同提取物获得的光谱进行比较后发现,sn-位置异构体PC 16:0/18:1和PC 18:1/16:0(其中18:1链分别存在于甘油主链的sn-2和sn-1位置)在天然或合成来源的脂质中最常同时出现。此外,这两种异构体的比例在来自不同生物体的提取物之间甚至在同一生物体的相邻组织之间都有显著差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01d9/4399504/6b2711bf018e/srep09243-f1.jpg

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