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用电喷雾解吸电离氢/氘交换-质谱法表征溶剂化二糖的动力学。

Characterizing the Dynamics of Solvated Disaccharides with In-Electrospray Ionization Hydrogen/Deuterium Exchange-Mass Spectrometry.

机构信息

Department of Chemistry and Biochemistry, Baylor University, One Bear Place #97348, Waco, Texas 76798, United States.

出版信息

Anal Chem. 2024 Aug 6;96(31):12649-12657. doi: 10.1021/acs.analchem.4c01136. Epub 2024 Jul 26.

Abstract

Carbohydrates have various biological functions that are based on their structures. However, the composition and the glycosidic-bond linkage and configuration of carbohydrates present challenges for their characterization. Furthermore, isomeric features contribute to the formation of intramolecular hydrogen bonds, which influence the flexibility and dynamics of carbohydrates. Hydrogen/deuterium exchange-mass spectrometry (HDX-MS) enables the analysis of protein dynamics by monitoring deuterium labeling after HDX for different lengths of time. In-electrospray ionization (in-ESI) HDX-MS has been used to rapidly label solvated carbohydrates with labeling occurring during desolvation of ESI droplets. Therefore, HDX-labeling times can be altered by changing the spray-solvent conductivity, which changes the initial size of ESI droplets and their resulting lifetimes. Here, we utilize in-ESI HDX-MS to characterize nine isomeric disaccharides with different monosaccharide compositions and glycosidic-bond linkages and configurations. We compared both the relative -uptake of isomers at individual conductivities, or HDX-labeling times, and the trends associated with labeling at multiple conductivities. Interestingly, the relative -uptake trends were correlated to isomeric features that affect disaccharide flexibility, including formation of intramolecular hydrogen bonds. Among the isomeric features studied, linkage was observed to have a significant influence on relative -uptake with (1-3)-linked disaccharides having more change in relative -uptake with changing conductivity compared to other linkages. Overall, this research illustrates how in-ESI HDX-MS can be applied to structurally characterize disaccharides with distinct isomeric features. Furthermore, this work shows that in-ESI HDX-MS can be used to monitor the dynamics of solvated molecules with rapidly exchanging functional groups.

摘要

碳水化合物具有多种基于其结构的生物学功能。然而,碳水化合物的组成、糖苷键连接和构型为其特性的描述带来了挑战。此外,同分异构特征有助于形成分子内氢键,从而影响碳水化合物的柔韧性和动态性。氢/氘交换-质谱(HDX-MS)通过监测不同时间的 HDX 后氘标记,可用于分析蛋白质的动力学。电喷雾电离(ESI)中的 HDX-MS 已被用于通过在 ESI 液滴去溶剂化过程中进行标记来快速标记溶剂化的碳水化合物。因此,通过改变喷雾溶剂的电导率可以改变 HDX 标记时间,从而改变 ESI 液滴的初始大小及其寿命。在这里,我们利用 ESI 中的 HDX-MS 来表征具有不同单糖组成、糖苷键连接和构型的 9 种同分异构二糖。我们比较了在各个电导率下(或 HDX 标记时间下)同分异构体的相对摄取率,以及与在多个电导率下标记相关的趋势。有趣的是,相对摄取率趋势与影响二糖柔韧性的同分异构特征相关,包括分子内氢键的形成。在所研究的同分异构特征中,连接方式被观察到对相对摄取率有显著影响,与其他连接方式相比,(1-3)连接的二糖在电导率变化时相对摄取率的变化更大。总体而言,这项研究说明了如何应用 ESI 中的 HDX-MS 对具有不同同分异构特征的二糖进行结构表征。此外,这项工作表明,ESI 中的 HDX-MS 可用于监测具有快速交换官能团的溶剂化分子的动力学。

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