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优化多种糖苷酶和化学稳定策略,通过质谱成像检测福尔马林固定石蜡包埋组织中的 N-糖异构体。

Optimization of Multiple Glycosidase and Chemical Stabilization Strategies for N-Glycan Isomer Detection by Mass Spectrometry Imaging in Formalin-Fixed, Paraffin-Embedded Tissues.

机构信息

Department of Cell and Molecular Pharmacology, Medical University of South Carolina, Charleston, SC, USA.

出版信息

Methods Mol Biol. 2021;2271:303-316. doi: 10.1007/978-1-0716-1241-5_21.

Abstract

The analysis of N-glycan distributions in formalin-fixed, paraffin-embedded (FFPE) tissues by matrix-assisted laser desorption/ionization (MALDI) imaging mass spectrometry (IMS) is an effective approach for characterization of many disease states. As the workflow has matured and new technology emerged, approaches are needed to more efficiently characterize the isomeric structures of these N-glycans to expand on the specificity of their localization within tissue. Sialic acid chemical derivatization can be used to determine the isomeric linkage (α2,3 or α2,6) of sialic acids attached to N-glycans, while endoglycosidase F3 (Endo F3) can be enzymatically applied to preferentially release α1,6-linked core fucosylated glycans, further describing the linkage of fucose on N-glycans. Here we describe workflows where N-glycans are chemically derivatized to reveal sialic acid isomeric linkages, combined with a dual-enzymatic approach of endoglycosidase F3 and PNGase F to further elucidate fucosylation isomers on the same tissue section.

摘要

通过基质辅助激光解吸/电离(MALDI)成像质谱(IMS)分析福尔马林固定、石蜡包埋(FFPE)组织中的 N-糖链分布是一种有效的方法,可用于表征许多疾病状态。随着工作流程的成熟和新技术的出现,需要采用新方法更有效地表征这些 N-聚糖的异构体结构,以扩展其在组织内定位的特异性。唾液酸化学衍生化可用于确定与 N-聚糖连接的唾液酸的异构体键(α2,3 或 α2,6),而内切糖苷酶 F3(Endo F3)可通过酶促作用优先释放α1,6 连接的核心岩藻糖基化聚糖,从而进一步描述 N-聚糖上岩藻糖的连接方式。在这里,我们描述了将 N-聚糖化学衍生化以揭示唾液酸异构体键的工作流程,同时结合内切糖苷酶 F3 和 PNGase F 的双重酶促方法,进一步阐明同一组织切片上的岩藻糖异构体。

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