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肝素四糖的电子脱附解离与红外多光子解离

ELECTRON DETACHMENT DISSOCIATION AND INFRARED MULTIPHOTON DISSOCIATION OF HEPARIN TETRASACCHARIDES.

作者信息

Leach Franklin E, Xiao Zhongping, Laremore Tatiana N, Linhardt Robert J, Amster I Jonathan

机构信息

University of Georgia, Department of Chemistry, Athens, GA 30602.

出版信息

Int J Mass Spectrom. 2011 Dec 1;308(2-3):253-259. doi: 10.1016/j.ijms.2011.08.029.

Abstract

Heparin glycosaminoglycans (GAGs) present the most difficult glycoform for analytical characterization due to high levels of sulfation and structural heterogeneity. Recent contamination of the clinical heparin supply and subsequent fatalities has highlighted the need for sensitive methodologies of analysis. In the last decade, tandem mass spectrometry has been increasingly applied for the analysis of GAGs, but developments in the characterization of highly sulfated compounds have been minimal due to the low number of cross-ring cleavages generated by threshold ion activation by collisional induced dissociation (CID). In the current work, electron detachment dissociation (EDD) and infrared multiphoton dissociation (IRMPD) are applied to a series of heparin tetrasaccharides. With both activation methods, abundant glycosidic and cross-ring cleavages are observed. The concept of Ionized Sulfate Criteria (ISC) is presented as a succinct method for describing the charge state, degree of ionization and sodium/proton exchange in the precursor ion. These factors contribute to the propensity for useful fragmentation during MS/MS measurements. Precursors with ISC values of 0 are studied here, and shown to yield adequate structural information from ion activation by EDD or IRMPD.

摘要

肝素糖胺聚糖(GAGs)由于高度硫酸化和结构异质性,是分析表征中最难的糖型。近期临床肝素供应受到污染及随后的死亡事件凸显了对灵敏分析方法的需求。在过去十年中,串联质谱已越来越多地应用于GAGs的分析,但由于碰撞诱导解离(CID)阈值离子激活产生的跨环裂解数量较少,高度硫酸化化合物表征方面的进展甚微。在当前工作中,电子脱附解离(EDD)和红外多光子解离(IRMPD)被应用于一系列肝素四糖。使用这两种激活方法时,均观察到丰富的糖苷键和跨环裂解。提出了离子化硫酸盐标准(ISC)的概念,作为描述前体离子电荷状态、离子化程度和钠/质子交换的简洁方法。这些因素有助于在串联质谱测量期间产生有用碎片的倾向。本文研究了ISC值为0的前体,并表明通过EDD或IRMPD进行离子激活可产生足够的结构信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44c0/3254104/7421082969fc/nihms323358f1.jpg

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