Open AccessChemistryMedicine

Suyong Re, Shigehisa Watabe, W. Nishima, E. Muneyuki, Y. Yamaguchi, Alexander D. MacKerell, Y. Sugita

2018.1.26Scientific Reports

DOI: 10.1038/s41598-018-20012-0

tlooto Summary

This work describes conformational ensembles of gas-phase N-glycans under the electrospray ionization condition using molecular dynamics simulations with enhanced sampling and shows that the separation of CCSs between isomers reflects folding features of N- glycans, which are determined both by chemical compositions and protonation states.

Abstract

Ion mobility mass spectrometry (IM-MS) is a technique capable of investigating structural changes of biomolecules based on their collision cross section (CCS). Recent advances in IM-MS allow us to separate carbohydrate isomers with subtle conformational differences, but the relationship between CCS and atomic structure remains elusive. Here, we characterize conformational ensembles of gas-phase N-glycans under the electrospray ionization condition using molecular dynamics simulations with enhanced sampling. We show that the separation of CCSs between isomers reflects folding features of N-glycans, which are determined both by chemical compositions and protonation states. Providing a physicochemical basis of CCS for N-glycans helps not only to interpret IM-MS measurements but also to estimate CCSs of complex glycans.

Citation format

RE, Suyong, et al. Characterization of conformational ensembles of protonated n-glycans in the gas-phase. Scientific Reports, 2018, 8.