Selenium-based metabolic oligosaccharide engineering strategy for quantitative glycan detection

Author:

Tian XiaoORCID,Zheng LingnaORCID,Wang ChangjiangORCID,Han YidaORCID,Li YujieORCID,Cui TongxiaoORCID,Liu JialinORCID,Liu ChuanmingORCID,Jia GuogengORCID,Yang LujieORCID,Hsu YiORCID,Zeng Chen,Ding LijunORCID,Wang ChuORCID,Cheng BoORCID,Wang MengORCID,Xie RanORCID

Abstract

AbstractMetabolic oligosaccharide engineering (MOE) is a classical chemical approach to perturb, profile and perceive glycans in physiological systems, but probes upon bioorthogonal reaction require accessibility and the background signal readout makes it challenging to achieve glycan quantification. Here we develop SeMOE, a selenium-based metabolic oligosaccharide engineering strategy that concisely combines elemental analysis and MOE,enabling the mass spectrometric imaging of glycome. We also demonstrate that the new-to-nature SeMOE probes allow for detection, quantitative measurement and visualization of glycans in diverse biological contexts. We also show that chemical reporters on conventional MOE can be integrated into a bifunctional SeMOE probe to provide multimodality signal readouts. SeMOE thus provides a convenient and simplified method to explore the glyco-world.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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