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通过串联质谱实验证明源自天冬氨酸的质子化N-脂肪酰基氨基酸的非典型裂解。

Atypical cleavage of protonated N-fatty acyl amino acids derived from aspartic acid evidenced by sequential MS experiments.

作者信息

Boukerche Toufik Taalibi, Alves Sandra, Le Faouder Pauline, Warnet Anna, Bertrand-Michel Justine, Bouchekara Mohamed, Belbachir Mohammed, Tabet Jean-Claude

机构信息

IPCM UMR-CNRS 8232, University Paris VI (UPMC), Paris, France.

Université Oran 1 Ahmed Ben-Balla, Oran, Algeria.

出版信息

Amino Acids. 2016 Dec;48(12):2717-2729. doi: 10.1007/s00726-016-2286-0. Epub 2016 Aug 26.

Abstract

Lipidomics calls for information on detected lipids and conjugates whose structural elucidation by mass spectrometry requires to rationalization of their gas phase dissociations toward collision-induced dissociation (CID) processes. This study focused on activated dissociations of two lipoamino acid (LAA) systems composed of N-palmitoyl acyl coupled with aspartic and glutamic acid mono ethyl esters (as LAA and LAA). Although in MS/MS, their CID spectra show similar trends, e.g., release of water and ethanol, the [(LAA+H)-CHOH] product ions dissociate via distinct pathways in sequential MS experiments. The formation of all the product ions is rationalized by charge-promoted cleavages often involving stepwise processes with ion isomerization into ion-dipole prior to dissociation. The latter explains the maleic anhydride or ketene neutral losses from N-palmitoyl acyl aspartate and glutamate anhydride fragment ions, respectively. Consequently, protonated palmitoyl acid amide is generated from LAA whereas LAA leads to the [*E+H-HO] anhydride. The former releases ammonia to provide acylium, which gives the C H and C H carbenium series. This should offer structural information, e.g., to locate either unsaturation(s) or alkyl group branching present on the various fatty acyl moieties of lipo-aspartic acid in further studies based on MS experiments.

摘要

脂质组学需要有关检测到的脂质和共轭物的信息,通过质谱对其结构进行解析需要使其气相解离合理化,以实现碰撞诱导解离(CID)过程。本研究聚焦于由N-棕榈酰基与天冬氨酸和谷氨酸单乙酯偶联组成的两种脂氨基酸(LAA)系统的活化解离(分别为LAA和LAA)。尽管在串联质谱中,它们的CID谱显示出相似的趋势,例如水和乙醇的释放,但在连续质谱实验中,[(LAA+H)-CHOH]产物离子通过不同的途径解离。所有产物离子的形成可通过电荷促进裂解来合理化,电荷促进裂解通常涉及逐步过程,即在解离前离子异构化为离子-偶极子。后者分别解释了N-棕榈酰基天冬氨酸和谷氨酸酐碎片离子中马来酸酐或乙烯酮中性丢失的原因。因此,LAA生成质子化棕榈酸酰胺,而LAA生成[*E+H-HO]酐。前者释放氨以提供酰鎓离子,从而产生C H和C H碳鎓离子系列。这应该能提供结构信息,例如,在基于质谱实验的进一步研究中,用于确定脂天冬氨酸各种脂肪酰基部分上存在的不饱和度或烷基分支。

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