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Determining the gas-phase structures of α-helical peptides from shape, microsolvation, and intramolecular distance data.

Authors :
Wu R
Metternich JB
Kamenik AS
Tiwari P
Harrison JA
Kessen D
Akay H
Benzenberg LR
Chan TD
Riniker S
Zenobi R
Source :
Nature communications [Nat Commun] 2023 May 22; Vol. 14 (1), pp. 2913. Date of Electronic Publication: 2023 May 22.
Publication Year :
2023

Abstract

Mass spectrometry is a powerful technique for the structural and functional characterization of biomolecules. However, it remains challenging to accurately gauge the gas-phase structure of biomolecular ions and assess to what extent native-like structures are maintained. Here we propose a synergistic approach which utilizes Förster resonance energy transfer and two types of ion mobility spectrometry (i.e., traveling wave and differential) to provide multiple constraints (i.e., shape and intramolecular distance) for structure-refinement of gas-phase ions. We add microsolvation calculations to assess the interaction sites and energies between the biomolecular ions and gaseous additives. This combined strategy is employed to distinguish conformers and understand the gas-phase structures of two isomeric α-helical peptides that might differ in helicity. Our work allows more stringent structural characterization of biologically relevant molecules (e.g., peptide drugs) and large biomolecular ions than using only a single structural methodology in the gas phase.<br /> (© 2023. The Author(s).)

Details

Language :
English
ISSN :
2041-1723
Volume :
14
Issue :
1
Database :
MEDLINE
Journal :
Nature communications
Publication Type :
Academic Journal
Accession number :
37217470
Full Text :
https://doi.org/10.1038/s41467-023-38463-z