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Collision-induced dissociation of aminophospholipids (PE, MMPE, DMPE, PS): an apparently known fragmentation process revisited

机译:碰撞诱导的氨基磷脂的解离(PE,MMPE,DMPE,PS):重新认识了一个已知的破碎过程

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摘要

A new type of low-mass substituted 4-oxazolin product ions of [M + H](+) precursor ions of aminophospholipids (glycerophosphatidylethanolamine, glycerophosphatidyl-N-methylethanolamine, glycerophosphatidyl-N,N-dimethylethanolamine, glycerophosphatidylserine) resulting from high-energy collision-induced dissociation (matrix-assisted laser desorption/ionization time-of-flight/reflectron time-of-flight mass spectrometry) and low-energy collision-induced dissociation (e.g., electrospray ionization quadrupole reflectron time-of-flight mass spectrometry) with accurate mass determination is described; these were previously misidentified as CHO-containing radical cationic product ions. The mechanism for the formation of these ions is proposed to be via rapid loss of water followed by cyclization to an 11-membered-ring transition state for the sn-1 fatty acid substituent and to a ten-membered-ring transition state for the sn-2 fatty acid substituent, and via final loss of monoacylglycerol phosphate, leading to substituted 4-oxazolin product ions. The minimum structural requirement for this interesting skeletal rearrangement fragmentation is an amino group linked to at least one hydrogen atom (i.e., ethanolamine, N-methylethanolamine, serine). Therefore, N,N-dimethylethanolamine derivates do not exhibit this type of fragmentation. The analytical value of these product ions is given by the fact that by post source decay and particularly high-energy collision-induced dissociation achieved via matrix-assisted laser desorption/ionization time-of-flight/reflectron time-of-flight mass spectrometry, the sn-2-related substituted 4-oxazolin product ion is always significantly more abundant than the sn-1-related one, which is quite helpful for detailed structural analysis of complex lipids. All other important product ions found are described in detail (following our previously published glycerophospholipid product ion nomenclature; Pittenauer and Allmaier, Int. J. Mass. Spectrom. 301:90-1012, 2011).
机译:高能产生的一种新型的氨基磷脂[M + H](+)前体离子的低质量取代的4-恶唑啉产物离子(甘油磷脂酰乙醇胺,甘油磷脂酰-N-甲基乙醇胺,甘油磷脂酰-N,N-二甲基乙醇胺,甘油磷脂酰丝氨酸)碰撞诱导解离(基质辅助激光解吸/电离飞行时间/反射电子飞行时间质谱)和低能碰撞诱导解离(例如电喷雾电离四极反射电子飞行时间质谱)描述了精确的质量测定;这些以前被误认为是含CHO的自由基阳离子产物离子。提出了形成这些离子的机理是通过快速失水,然后环化成Sn-1脂肪酸取代基为11元环过渡态和sn为10元环过渡态。 -2脂肪酸取代基,并通过磷酸单酰基甘油的最终损失,导致取代的4-恶唑啉产物离子。这种有趣的骨架重排断裂的最低结构要求是与至少一个氢原子相连的氨基(即乙醇胺,N-甲基乙醇胺,丝氨酸)。因此,N,N-二甲基乙醇胺衍生物不表现出这种类型的断裂。这些产物离子的分析值是通过以下事实得出的:通过后源衰减,以及通过基质辅助激光解吸/电离飞行时间/反射电子飞行时间质谱法实现的高能碰撞诱导的离解, sn-2相关的取代的4-恶唑啉产物离子总是比sn-1相关的离子丰富得多,这对于复杂脂质的详细结构分析非常有帮助。发现的所有其他重要产物离子都有详细描述(遵循我们先前发布的甘油磷脂产物离子命名法; Pittenauer和Allmaier,Int。J. Mass。Spectrom。301:90-1012,2011)。

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