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71 个吡啶基氨化 N 连接寡糖的离子淌度碰撞截面和液相色谱保留时间数据集。

A Data Set of Ion Mobility Collision Cross Sections and Liquid Chromatography Retention Times from 71 Pyridylaminated N-Linked Oligosaccharides.

机构信息

Division of Structural Glycobiology, Institute of Molecular Biomembrane and Glycobiology, Tohoku Medical and Pharmaceutical University, 4-4-1 Komatsushima, Aoba-ku, Sendai, Miyagi981-8558, Japan.

Structural Glycobiology Team, RIKEN-Max Planck Joint Research Center, Global Research Cluster, RIKEN, 2-1 Hirosawa, Wako, Saitama351-0198, Japan.

出版信息

J Am Soc Mass Spectrom. 2022 Sep 7;33(9):1772-1783. doi: 10.1021/jasms.2c00165. Epub 2022 Aug 23.

Abstract

Determination of the glycan structure is an essential step in understanding structure-function relationships of glycans and glycoconjugates including biopharmaceuticals. Mass spectrometry, because of its high sensitivity and mass resolution, is an excellent means of analyzing glycan structures. We previously proposed a method for rapid and precise identification of -glycan structures by ultraperformance liquid chromatography-connected ion mobility mass spectrometry (UPLC/IM-MS). To substantiate this methodology, we here examine 71 pyridylaminated (PA-) -linked oligosaccharides including isomeric pairs. A data set on collision drift times, retention times, and molecular mass was collected for these PA-oligosaccharides. For standardization of the observables, LC retention times were normalized into glucose units (GU) using pyridylaminated α-1,6-linked glucose oligomers as reference, and drift times in IM-MS were converted into collision cross sections (CCS). To evaluate the CCS value of each PA-oligosaccharide, we introduced a CCS index which is defined as a CCS ratio of a target PA-glycan to the putative standard PA-glucose oligomer of the same /. We propose a strategy for practical structural analysis of -linked glycans based on the database of /, CCS index, and normalized retention time (GU).

摘要

糖链结构的测定是理解糖链和糖缀合物(包括生物制药)的结构-功能关系的重要步骤。由于质谱具有高灵敏度和质量分辨率,因此是分析糖链结构的绝佳手段。我们之前提出了一种通过超高效液相色谱-离子淌度质谱联用(UPLC/IM-MS)快速准确鉴定β-聚糖结构的方法。为了证实这种方法,我们在此检查了 71 个吡咯烷基化(PA-)-连接的寡糖,包括异构对。为这些 PA-寡糖收集了关于碰撞漂移时间、保留时间和分子量的数据组。为了使可观测值标准化,使用吡咯烷基化的α-1,6-连接的葡萄糖低聚物作为参考,将 LC 保留时间归一化为葡萄糖单位(GU),并将 IM-MS 中的漂移时间转换为碰撞截面(CCS)。为了评估每个 PA-寡糖的 CCS 值,我们引入了 CCS 指数,该指数定义为目标 PA-聚糖与相同的假定标准 PA-葡萄糖低聚物的 CCS 比。我们基于/、CCS 指数和归一化保留时间(GU)的数据库,提出了一种用于实用的β-连接糖链结构分析的策略。

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