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脂肪酸[M - 2H + Na]-离子的碰撞诱导解离:电荷导向的碎片化及双键位置的确定

Collision-induced dissociation of fatty acid [M - 2H + Na]- ions: charge-directed fragmentation and assignment of double bond position.

作者信息

Thomas Michael C, Altvater Jens, Gallagher Thomas J, Nette Geoffrey W

机构信息

Independent Marine Biochemistry Research, Moreton Bay Research Station, Dunwich, QLD, 4183, Australia,

出版信息

J Am Soc Mass Spectrom. 2014 Nov;25(11):1917-26. doi: 10.1007/s13361-014-0966-0. Epub 2014 Aug 21.

Abstract

The collision-induced dissociation (CID) of cationic fatty acid-metal ion complexes has been extensively studied and, in general, provides rich structural information. In particular, charge-remote fragmentation processes are commonly observed allowing the assignment of double bond position. In a previous manuscript, we presented two methods to doubly deprotonate polyunsaturated fatty acids to form anionic fatty acid-sodium ion complexes, referred to as [M - 2H + Na] (-) ions. In the current manuscript, the CID behavior of these [M - 2H + Na] (-) ions is investigated for the first time. Significantly, we also present a deuterium-labeling experiment, which excludes the possibility that deprotonation occurs predominately at the α-carbon in the formation of fatty acid M - H + NaF ions. This supports our original proposal where deprotonation occurs at the bis-allylic positions of polyunsaturated fatty acids. CID spectra of polyunsaturated fatty acid M - 2H + Na ions display abundant product ions arising from acyl chain cleavages. Through the examination of fatty acid isomers, it is demonstrated that double bond position may be unequivocally determined for methylene-interrupted polyunsaturated fatty acids with three or more carbon-carbon double bonds. In addition, CID of M - 2H + Na ions was applied to 18:3 isomers of Nannochloropsis oculata and three isomers were tentatively identified: ∆(9,12,15)18:3, ∆(6,9,12)18:3, and ∆(5,8,11)18:3. We propose that structurally-informative product ions are formed via charge-driven fragmentation processes at the site of the resonance-stabilized carbanion as opposed to charge-remote fragmentation processes, which could be inferred if deprotonation occurred predominately at the α-carbon.

摘要

阳离子脂肪酸 - 金属离子络合物的碰撞诱导解离(CID)已得到广泛研究,总体而言,能提供丰富的结构信息。特别是,电荷远程碎裂过程普遍存在,可用于确定双键位置。在之前的一篇论文中,我们提出了两种方法使多不饱和脂肪酸双去质子化,以形成阴离子脂肪酸 - 钠离子络合物,即[M - 2H + Na]⁻离子。在本论文中,首次研究了这些[M - 2H + Na]⁻离子的CID行为。值得注意的是,我们还进行了氘标记实验,排除了在脂肪酸[M - H + NaF]⁻离子形成过程中去质子化主要发生在α - 碳上的可能性。这支持了我们最初的提议,即去质子化发生在多不饱和脂肪酸的双烯丙基位置。多不饱和脂肪酸[M - 2H + Na]⁻离子的CID谱显示出大量源于酰基链断裂的产物离子。通过对脂肪酸异构体的研究表明,对于具有三个或更多碳 - 碳双键的亚甲基间断多不饱和脂肪酸,双键位置可以明确确定。此外,将[M - 2H + Na]⁻离子的CID应用于眼点拟微绿球藻的18:3异构体,并初步鉴定出三种异构体:∆(9,12,15)18:3、∆(6,9,12)18:3和∆(5,8,11)18:3。我们认为,结构信息丰富的产物离子是通过共振稳定碳负离子位点的电荷驱动碎裂过程形成的,而不是电荷远程碎裂过程,电荷远程碎裂过程是如果去质子化主要发生在α - 碳上时可以推断出来的。

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