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Travelling-wave ion mobility and negative ion fragmentation of high-mannose N-glycans

机译:高甘露糖N-聚糖的行波离子迁移率和负离子破碎

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The isomeric structure of high-mannose N-glycans can significantly impact biological recognition events. Here, the utility of travelling-wave ion mobility mass spectrometry for isomer separation of high-mannose N-glycans is investigated. Negative ion fragmentation using collision-induced dissociation gave more informative spectra than positive ion spectra with mass-different fragment ions characterizing many of the isomers. Isomer separation by ion mobility in both ionization modes was generally limited, with the arrival time distributions (ATD) often showing little sign of isomers. However, isomers could be partially resolved by plotting extracted fragment ATDs of the diagnostic fragment ions from the negative ion spectra, and the fragmentation spectra of the isomers could be extracted by using ions from limited areas of the ATD peak. In some cases, asymmetric ATDs were observed, but no isomers could be detected by fragmentation. In these cases, it was assumed that conformers or anomers were being separated. Collision cross sections of the isomers in positive and negative fragmentation mode were estimated from travelling-wave ion mobility mass spectrometry data using dextran glycans as calibrant. More complete collision cross section data were achieved in negative ion mode by utilizing the diagnostic fragment ions. Examples of isomer separations are shown for N-glycans released from the well-characterized glycoproteins chicken ovalbumin, porcine thyroglobulin and gp120 from the human immunodeficiency virus. In addition to the cross-sectional data, details of the negative ion collision-induced dissociation spectra of all resolved isomers are discussed. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:高甘露糖N-聚糖的异构体结构可以显着影响生物识别事件。在这里,研究了行波离子迁移质谱法在高甘露糖N-聚糖异构体分离中的应用。使用碰撞诱导解离的负离子裂解比正离子质谱具有更多的信息光谱,其中质量异构的碎片离子表征了许多异构体。在两种电离模式下,通过离子迁移率进行的异构体分离通常受到限制,到达时间分布(ATD)通常显示很少的异构体迹象。但是,可以通过绘制从负离子光谱中提取的诊断性碎片离子的碎片ATD来部分解析异构体,并且可以使用ATD峰有限区域中的离子提取异构体的碎片光谱。在某些情况下,观察到不对称的ATD,但无法通过碎片检测到异构体。在这些情况下,假定构象异构体或异构体被分离。使用葡聚糖聚糖作为校正剂,根据行波离子迁移质谱数据估算正和负碎片模式下异构体的碰撞截面。通过利用诊断碎片离子,可以在负离子模式下获得更完整的碰撞截面数据。显示了从特征明确的糖蛋白鸡卵白蛋白,猪甲状腺球蛋白和人免疫缺陷病毒gp120释放的N-聚糖的异构体分离实例。除横截面数据外,还讨论了所有已分解异构体的负离子碰撞诱导解离光谱的详细信息。版权所有(c)2016 John Wiley&Sons,Ltd.

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