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Characterization of Isomeric Glycans by Reversed Phase Liquid Chromatography-Electronic Excitation Dissociation Tandem Mass Spectrometry

机译:反相液相色谱-电子激发解离串联质谱法表征异构体聚糖

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摘要

The occurrence of numerous structural isomers in glycans from biological sources presents a severe challenge for structural glycomics. The subtle differences among isomeric structures demand analytical methods that can provide structural details while working efficiently with on-line glycan separation methods. Although liquid chromatography-tandem mass spectrometry (LC-MS/MS) is a powerful tool for mixture analysis, the commonly utilized collision-induced dissociation (CID) method often does not generate a sufficient number of fragments at the MS2 level for comprehensive structural characterization. Here, we studied the electronic excitation dissociation (EED) behaviors of metal-adducted, permethylated glycans, and identified key spectral features that could facilitate both topology and linkage determinations. We developed an EED-based, nanoscale, reversed phase (RP)LC-MS/MS platform, and demonstrated its ability to achieve complete structural elucidation of up to five structural isomers in a single LC-MS/MS analysis.
机译:来自生物来源的聚糖中许多结构异构体的出现对结构糖组学提出了严峻挑战。异构体结构之间的细微差异要求分析方法能够提供结构细节,同时有效地利用在线聚糖分离方法。尽管液相色谱-串联质谱(LC-MS / MS)是进行混合物分析的强大工具,但常用的碰撞诱导解离(CID)方法通常在MS 2 < / sup>级别进行全面的结构表征。在这里,我们研究了金属加成的全甲基化聚糖的电子激发解离(EED)行为,并确定了可以促进拓扑结构和键合确定的关键光谱特征。我们开发了基于EED的纳米级反相(RP)LC-MS / MS平台,并展示了其在一次LC-MS / MS分析中实现多达五个结构异构体的完整结构解析的能力。

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