Abstract
An extension of the GROMOS 53A6GLYC force field for carbohydrates to encompass glycoprotein linkages is presented. The set includes new atomic charges and incorporates adequate torsional potential parameters for N-, S-, C-, P-, and O-glycosydic linkages, offering compatibility with the GROMOS force field family for proteins. Validation included the description of glycosydic linkage geometries between amino acid and monosaccharide residues, comparison of NMR-derived protein-carbohydrate and carbohydrate-carbohydrate nuclear overhauser effect (NOE) signals for glycoproteins and the effects of glycosylation on protein flexibility and dynamics.
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Pol-Fachin, L., Verli, H., & Lins, R. D. (2014). Extension and validation of the GROMOS 53A6(GLYC) parameter set for glycoproteins. Journal of Computational Chemistry, 35(29), 2087–2095. https://doi.org/10.1002/jcc.23721
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