Issue 34, 2023

Conformational flexibility of the disaccharide β-l-Fucp-(1→4)-α-d-Glcp-OMe as deduced from NMR spectroscopy experiments and computer simulations

Abstract

Carbohydrates in biological systems are referred to as glycans and modification of their structures is a hallmark indicator of disease. Analysis of the three-dimensional structure forms the basis for further insight into how they function and comparison of crystal structure with solution-state conformation(s) is particularly relevant, which has been performed for the disaccharide β-L-Fucp-(1→4)-α-D-Glcp-OMe. In water solution the conformational space at the glycosidic linkage between the two sugar residues is identified from molecular dynamics (MD) simulations as having a low-energy exo-syn conformation, deviating somewhat from the solid-state conformation, and two anti-conformational states, i.e., anti-ϕ and anti-ψ, indicating flexibility at the glycosidic linkage. NMR data were obtained from 1D 1H,1H-NOESY and STEP-NOESY experiments, measurement of transglycosidic 3JCH coupling constants and NMR spin-simulation. The free energy profile of the ω torsion angle computed from MD simulation was in excellent agreement with the rotamer distribution from NMR experiment being for gt:gg:tg 38 : 53 : 9, respectively, with a proposed inter-residue O5′⋯HO6 hydrogen bond being predominant in the gg rotamer. Quantum mechanics methodology was used to calculate transglycosidic NMR 3JCH coupling constants, averaged over a conformational ensemble of structures representing various rotamers of exocyclic groups, in good to excellent agreement with Karplus-type relationships previously developed. Furthermore, 1H and 13C NMR chemical shifts were calculated using the same methodology and were found to be in excellent agreement with experimental data.

Graphical abstract: Conformational flexibility of the disaccharide β-l-Fucp-(1→4)-α-d-Glcp-OMe as deduced from NMR spectroscopy experiments and computer simulations

Article information

Article type
Paper
Submitted
20 Jul 2023
Accepted
02 Aug 2023
First published
02 Aug 2023
This article is Open Access
Creative Commons BY license

Org. Biomol. Chem., 2023,21, 6979-6994

Conformational flexibility of the disaccharide β-L-Fucp-(1→4)-α-D-Glcp-OMe as deduced from NMR spectroscopy experiments and computer simulations

W. Plazinski, T. Angles d'Ortoli and G. Widmalm, Org. Biomol. Chem., 2023, 21, 6979 DOI: 10.1039/D3OB01153D

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