Cryogenic Ion Spectroscopy for Identification of Monosaccharide Anomers

J Phys Chem A. 2019 Apr 4;123(13):2815-2819. doi: 10.1021/acs.jpca.9b00527. Epub 2019 Mar 13.

Abstract

We combine conformer-selective, cryogenic infrared spectroscopy, quantum mechanical computations, and 18O substitution at the reducing end to determine the structural preferences of protonated glucosamine in the gas phase. Cryogenic infrared-infrared (IR-IR) double resonance spectroscopy of helium-tagged, protonated glucosamine provides vibrational fingerprints of individual conformers, and 18O isotopic labeling facilitates the match with computed structures and provides a selective probe of the anomeric hydroxyl. This is key for using vibrational spectroscopy for glycan analysis and determining the generality of anomeric memory during glycosidic bond cleavage.