Department of Molecular Physics, Fritz Haber Institute of the Max Planck Society, Faradayweg 4-6, 14195, Berlin, Germany.
Institute of Chemistry and Biochemistry, Freie Universität Berlin, Takustraße 3, 14195, Berlin, Germany.
Anal Bioanal Chem. 2019 Jul;411(19):4637-4645. doi: 10.1007/s00216-019-01657-w. Epub 2019 Mar 2.
Fucose migration reactions represent a substantial challenge in the analysis of fucosylated glycan structures by mass spectrometry. In addition to the well-established observation of transposed fucose residues in glycan-dissociation product ions, recent experiments show that the rearrangement can also occur in intact glycan ions. These results suggest a low-energy barrier for migration of the fucose residue and broaden the relevance of fucose migration to include other types of mass spectrometry experiments, including ion mobility-mass spectrometry and ion spectroscopy. In this work, we utilize cold-ion infrared spectroscopy to provide further insight into glycan scrambling in intact glycan ions. Our results show that the mobility of the proton is a prerequisite for the migration reaction. For the prototypical fucosylated glycans Lewis x and blood group antigen H-2, the formation of adduct ions or the addition of functional groups with variable proton affinity yields significant differences in the infrared spectra. These changes correlate well with the promotion or inhibition of fucose migration through the presence or absence of a mobile proton.
岩藻糖迁移反应是质谱分析岩藻糖糖缀合物结构的一个重大挑战。除了在聚糖解离产物离子中观察到已确立的岩藻糖残基易位外,最近的实验还表明,重排也可能发生在完整的聚糖离子中。这些结果表明岩藻糖残基的迁移具有较低的能垒,并且将岩藻糖迁移的相关性扩展到包括其他类型的质谱实验,包括离子淌度-质谱和离子光谱。在这项工作中,我们利用冷离子红外光谱进一步深入了解完整聚糖离子中的聚糖重排。我们的结果表明,质子的迁移率是迁移反应的前提条件。对于原型岩藻糖糖路易斯 x 和血型抗原 H-2,加合物离子的形成或具有可变质子亲和性的官能团的添加会导致红外光谱产生显著差异。这些变化与通过存在或不存在迁移质子来促进或抑制岩藻糖迁移很好地相关。