Laboratory of Organic Chemistry, Department of Chemistry and Applied Biosciences, ETH Zurich, CH-8093 Zurich, Switzerland.
Anal Chem. 2022 Jul 26;94(29):10531-10539. doi: 10.1021/acs.analchem.2c02019. Epub 2022 Jul 14.
Structural isomers of -glycans that are identical in mass and atomic composition provide a great challenge to conventional mass spectrometry (MS). This study employs additional dimensions of structural elucidation including ion mobility (IM) spectroscopy coupled to hydrogen/deuterium exchange (HDX) and electron capture dissociation (ECD) to characterize three main A2 -glycans and their conformers. A series of IM-MS experiments were able to separate the low abundance -glycans and their linkage-based isomers (α1-3 and α1-6 for A2G1). HDX-IM-MS data indicated the presence of multiple gas-phase structures for each -glycan including the isomers of A2G1. Identification of A2G1 isomers by their collision cross section was complicated due to the preferential collapse of sugars in the gas phase, but it was possible by further ECD fragmentation. The cyclic IM-ECD approach was capable of assigning and identifying each isomer to its IM peak. Two unique cross-ring fragments were identified for each isomer: / = 624.21 for α1-6 and / = 462.16 for α1-3. Based on these key fragments, the first IM peak, indicating a more compact conformation, was assigned to α1-3 and the second IM peak, a more extended conformer, was assigned to α1-6.
在质量和原子组成上完全相同的 - 聚糖的结构异构体对传统的质谱(MS)构成了巨大的挑战。本研究采用了包括离子淌度(IM)光谱学与氢/氘交换(HDX)和电子捕获解离(ECD)相结合的额外结构解析维度,以表征三种主要的 A2 - 聚糖及其构象体。一系列 IM-MS 实验能够分离低丰度的 - 聚糖及其基于键的异构体(A2G1 的α1-3 和α1-6)。HDX-IM-MS 数据表明,每种 - 聚糖都存在多种气相结构,包括 A2G1 的异构体。由于在气相中糖的优先塌陷,通过其碰撞截面来鉴定 A2G1 异构体变得复杂,但通过进一步的 ECD 断裂是可能的。循环 IM-ECD 方法能够将每个异构体分配并识别到其 IM 峰。每个异构体都鉴定出两个独特的跨环片段:/ = 624.21 用于α1-6,/ = 462.16 用于α1-3。基于这些关键片段,指示更紧凑构象的第一个 IM 峰被分配给α1-3,而第二个 IM 峰,指示更扩展的构象体,被分配给α1-6。