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ELECTRON DETACHMENT DISSOCIATION OF SYNTHETIC HEPARAN SULFATE GLYCOSAMINOGLYCAN TETRASACCHARIDES VARYING IN DEGREE OF SULFATION AND HEXURONIC ACID STEREOCHEMISTRY

机译:电子脱离解离合成肝硫酸盐糖氨酰氨基聚糖甘氨酸四糖在硫酸盐和六尿酸立体化学的变化

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摘要

Glycosaminoglycan (GAG) carbohydrates provide a challenging analytical target for structural determination due to their polydisperse nature, non-template biosynthesis, and labile sulfate modifications. The resultant structures, although heterogeneous, contain domains which indicate a sulfation pattern or code that correlates to specific function. Mass spectrometry, in particular electron detachment dissociation Fourier transform ion cyclotron resonance (EDD FT-ICR MS), provides a highly sensitive platform for GAG structural analysis by providing cross-ring cleavages for sulfation location and product ions specific to hexuronic acid stereochemistry. To investigate the effect of sulfation pattern and variations in stereochemistry on EDD spectra, a series of synthetic heparan sulfate (HS) tetrasaccharides are examined. Whereas previous studies have focused on lowly sulfated compounds (0.5–1 sulfate groups per disaccharide), the current work extends the application of EDD to more highly sulfated tetrasaccharides (1–2 sulfate groups per disaccharide) and presents the first EDD of a tetrasaccharide containing a sulfated hexuronic acid. For these more highly sulfated HS oligomers, alternative strategies are shown to be effective for extracting full structural details. These strategies inlcude sodium cation replacement of protons, for determining the sites of sulfation, and desulfation of the oligosaccharides for the generation of product ions for assigning uronic acid stereochemistry.
机译:糖胺聚糖(GAG)碳水化合物由于其多分散性,非模板生物合成和不稳定的硫酸盐修饰而为结构测定提供了具有挑战性的分析目标。所得的结构尽管是异质的,但包含表明与特定功能相关的硫酸化模式或密码的结构域。质谱,尤其是电子离解解离傅里叶变换离子回旋共振(EDD FT-ICR MS),通过为硫酸根和特定于十六醛酸立体化学的产物离子提供跨环裂解,为GAG结构分析提供了一个高度敏感的平台。为了研究硫酸化模式和立体化学变化对EDD光谱的影响,对一系列合成的硫酸乙酰肝素(HS)四糖进行了检测。尽管以前的研究集中在低硫酸盐化合物(每个二糖0.5-1个硫酸盐基团)上,但目前的工作将EDD的应用扩展到了更高硫酸盐化的四糖(每个二糖1-2个硫酸盐基团),并提出了含有硫酸化的己糖醛酸。对于这些高度硫酸化的HS低聚物,替代策略已证明对提取完整的结构细节有效。这些策略包括质子的钠阳离子替代,以确定寡糖的硫酸化位点,以及寡糖的脱硫,以产生产物离子以分配糖醛酸立体化学。

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