A detailed picture of a protein–carbohydrate hydrogen-bonding network revealed by NMR and MD simulations

Author:

Nestor Gustav12ORCID,Ruda Alessandro3,Anderson Taigh4,Oscarson Stefan4,Widmalm Göran3,Gronenborn Angela M1

Affiliation:

1. Department of Structural Biology, University of Pittsburgh School of Medicine,1051 BST3, 3501 Fifth Ave, Pittsburgh, PA 15261, USA

2. Department of Molecular Sciences, Swedish University of Agricultural Sciences, P.O. Box 7015, SE-750 07, Uppsala, Sweden

3. Department of Organic Chemistry, Stockholm University, Svante Arrhenius väg 16C, Stockholm, Sweden

4. Centre for Synthesis and Chemical Biology, University College Dublin, Belfield, Dublin 4, Ireland

Abstract

Abstract Cyanovirin-N (CV-N) is a cyanobacterial lectin with antiviral activity towards HIV and several other viruses. Here, we identify mannoside hydroxyl protons that are hydrogen bonded to the protein backbone of the CV-N domain B binding site, using NMR spectroscopy. For the two carbohydrate ligands Manα(1→2)ManαOMe and Manα(1→2) Manα(1→6)ManαOMe five hydroxyl protons are involved in hydrogen-bonding networks. Comparison with previous crystallographic results revealed that four of these hydroxyl protons donate hydrogen bonds to protein backbone carbonyl oxygens in solution and in the crystal. Hydrogen bonds were not detected between the side chains of Glu41 and Arg76 with sugar hydroxyls, as previously proposed for CV-N binding of mannosides. Molecular dynamics simulations of the CV-N/Manα(1→2)Manα(1→6)ManαOMe complex confirmed the NMR-determined hydrogen-bonding network. Detailed characterization of CV-N/mannoside complexes provides a better understanding of lectin-carbohydrate interactions and opens up to the use of CV-N and similar lectins as antiviral agents.

Funder

Carl Trygger Foundation

Science Foundation Ireland

Swedish Research Council

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Biochemistry

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