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Structurally informative tandem mass spectrometry of highly sulfated natural and chemoenzymatically synthesized heparin and heparan sulfate glycosaminoglycans

机译:高度硫酸化的天然和化学酶法合成的肝素和硫酸乙酰肝素糖胺聚糖的结构信息串联质谱

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摘要

The highly sulfated glycosaminoglycan oligosaccharides derived from heparin and heparan sulfate have been a highly intractable class of molecules to analyze by tandem mass spectrometry. Under the many methods of ion activation, this class of molecules generally exhibits SO3 loss as the most significant fragmentation pathway, interfering with the assignment of the location of sulfo groups in glycosaminoglycan chains. We report here a method that stabilizes sulfo groups and facilitates the complete structural analysis of densely sulfated (two or more sulfo groups per disaccharide repeat unit) heparin and heparan sulfate oligomers. This is achieved by complete removal of all ionizable protons, either by charging during electrospray ionization or by Na+/H+ exchange. The addition of millimolar levels of NaOH to the sample solution facilitates the production of precursor ions that meet this criterion. This approach is found to work for a variety of heparin sulfate oligosaccharides derived from natural sources or produced by chemoenzymatic synthesis, with up to 12 saccharide subunits and up to 11 sulfo groups.
机译:衍生自肝素和硫酸乙酰肝素的高度硫酸化的糖胺聚糖寡糖已成为一类难于通过串联质谱分析的分子。在许多离子活化方法下,这类分子通常表现出SO3损失作为最重要的断裂途径,从而干扰了糖胺聚糖链中磺基位置的分配。我们在这里报告了一种稳定磺基并促进浓硫酸化(每个二糖重复单元两个或多个磺基)肝素和硫酸乙酰肝素低聚物的完整结构分析的方法。这可以通过在电喷雾电离过程中进行充电或通过Na + / H +交换完全去除所有可电离的质子来实现。向样品溶液中添加毫摩尔含量的NaOH有助于产生符合该标准的前体离子。已发现该方法适用于多种天然来源的肝素硫酸盐寡糖或化学合成法生产的硫酸肝素寡糖,具有多达12个糖亚基和多达11个磺基。

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