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利用电喷雾串联质谱中的线性四极离子阱,通过 A + 2 同位素离子的碰撞诱导解离,促进了含硫糖苷结构的解析。

Collision-induced dissociation of the A + 2 isotope ion facilitates glucosinolates structure elucidation by electrospray ionization-tandem mass spectrometry with a linear quadrupole ion trap.

机构信息

Dipartimento di Chimica, Università degli Studi di Bari Aldo Moro, Campus Universitario, Via E. Orabona, 4-70126 Bari, Italy.

出版信息

Anal Chem. 2010 Jul 1;82(13):5686-96. doi: 10.1021/ac100703w.

Abstract

An approach is presented that can be of general applicability for structural elucidation of naturally occurring glucosinolates (GLSs) in crude plant extracts based on the fragmentation of isotopic A and A + 2 peaks. The most important fragmentation pathways were studied by tandem mass spectrometry (MS(n), n = 2, 3) using a linear quadrupole ion trap (LTQ) upon GLSs separation by optimized reversed-phase liquid chromatography (RPLC) and electrospray ionization (ESI) in negative ion mode. As the LTQ MS analyzer ensures high sensitivity and linearity, the fragmentation behavior under collision induced dissociation (CID) of the isotopic peaks A and A + 2 as precursor ions was carefully examined. All GLSs (R-C(7)H(11)O(9)NS(2)(-)) share a common structure with at least two sulfur atoms and significant isotopic abundance of (34)S. Thus, dissociation of the +2 Da isotopomeric ions results in several fragment ion doublets containing a combination of (32)S and (34)S. Accordingly, their relative abundances allow one to speed up the structural recognition of GLSs with great confidence, as it produces more structurally informative ions than conventional tandem MS performed on A ions. This approach has been validated on known GLSs bearing two, three, four, and six sulfur atoms by comparing expected and measured isotopic peak abundance ratios (I(A)/I(A)(+2)). Both group- and compound-specific fragments were observed; the predominant pathway of fragmentation of GLSs gives rise to species having the following m/z values, M - SO(3) - H, M - 196 - H, M - 178 - H, and M - 162 - H after H rearrangement from the R- side chain. The present strategy was successfully applied to extracts of rocket salad leaves (Eruca sativa L.), which was sufficient for the chemical identification of a not already known 6-methylsulfonyl-3-oxohexyl-GLS, a long-chain-length aliphatic glucosinolate, which contains three sulfurs and exhibits a deprotonated molecular ion at m/z 494.1.

摘要

提出了一种基于同位素 A 和 A + 2 峰的碎裂来解析天然存在的硫代葡萄糖苷(GLS)的方法,该方法具有普遍适用性。通过串联质谱(MS(n),n = 2,3),使用优化的反相液相色谱(RPLC)和电喷雾电离(ESI)在负离子模式下分离 GLS 后,研究了最重要的碎裂途径。由于 LTQ MS 分析仪确保了高灵敏度和线性度,因此仔细检查了作为前体离子的同位素峰 A 和 A + 2 在碰撞诱导解离(CID)下的碎裂行为。所有 GLS(R-C(7)H(11)O(9)NS(2)(-))都具有至少两个硫原子和显著的(34)S 同位素丰度的共同结构。因此,+2 Da 同位素离子的解离会产生几个包含(32)S 和(34)S 组合的碎片离子偶。因此,它们的相对丰度可以加快 GLS 的结构识别,因为它产生的结构信息离子比传统的在 A 离子上进行的串联 MS 更多。通过比较预期和测量的同位素峰丰度比(I(A)/I(A)(+2)),该方法已在具有两个、三个、四个和六个硫原子的已知 GLS 上得到验证。观察到了基团和化合物特异性片段;GLS 的主要碎裂途径产生的物种具有以下 m/z 值:M - SO(3) - HM - 196 - HM - 178 - HM - 162 - H,在 R-侧链的 H 重排后。该策略成功应用于火箭沙拉叶(Eruca sativa L.)的提取物,足以对一种尚未被发现的 6-甲基亚磺酰基-3-氧代己基-GLS 进行化学鉴定,该化合物是一种长链脂肪族 GLS,含有三个硫原子,其去质子分子离子的质荷比为 m/z 494.1。

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