Publication | Open Access
Kirkwood–Buff-Derived Force Field for Peptides and Proteins: Philosophy and Development of KBFF20
27
Citations
206
References
2021
Year
EngineeringPeptide EngineeringPeptide ScienceAnalytical UltracentrifugationForce FieldProtein FoldingSmall PeptidesKirkwood–buff-derived Force FieldMolecular SimulationComputational BiochemistryBiophysicsProtein ChemistryBiochemistryMolecular MechanicBiomolecular DynamicsRotational PotentialsMolecular ModelingBiomolecular EngineeringNatural SciencesPeptide LibraryMolecular BiophysicsComputational Biophysics
A new classical nonpolarizable force field, KBFF20, for the simulation of peptides and proteins is presented. The force field relies heavily on the use of Kirkwood-Buff theory to provide a comparison of simulated and experimental Kirkwood-Buff integrals for solutes containing the functional groups common in proteins, thus ensuring intermolecular interactions that provide a good balance between the peptide-peptide, peptide-solvent, and solvent-solvent distributions observed in solution mixtures. In this way, it differs significantly from other biomolecular force fields. Further development and testing of the intermolecular potentials are presented here. Subsequently, rotational potentials for the ϕ/ψ and χ dihedral degrees of freedom are obtained by analysis of the Protein Data Bank, followed by small modifications to provide a reasonable balance between simulated and observed α and β percentages for small peptides. This, the first of two articles, describes in detail the philosophy and development behind KBFF20.
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