Related Experiment Video
Updated: Jun 5, 2026

Realistic Membrane Modeling Using Complex Lipid Mixtures in Simulation Studies
Published on: September 1, 2023
Nearest-Neighbor Effects in Short Unfolded Peptides: An Assessment of Molecular Dynamics Force Fields
Athul Suresh1, Reinhard Schweitzer-Stenner2, Brigita Urbanc1
1Department of Physics, Drexel University, Philadelphia, Pennsylvania 19104, United States.
None:
Molecular dynamics (MD) is a unique tool for the investigation of intrinsically disordered proteins (IDPs); however, the reliability of MD predictions depends on the accuracy of the underlying force field. Here, we evaluate CHARMM36m, Amber ff14SB, and Amber ff24EXP-GA with respect to their capacity to capture experimentally observed nearest-neighbor (NN) effects on the conformational dynamics of amino acid residues in short unfolded peptides in water. Amber ff24EXP-GA, developed from the parent Amber ff14SB, which is more amino acid-specific than the other two force fields and reproduces intrinsic conformational ensembles of amino acid residues significantly better than the parent force field, captures the NN effects better than Amber ff14SB. Despite a lack of residue specificity in intrinsic conformational ensembles, CHARMM36m, calibrated on global properties of IDPs, reproduces the NN effects on par with Amber ff24EXP-GA. These findings are important for the development of next-generation force fields that reproduce both the residue-specific conformational dynamics and global properties of IDPs.
Related Concept Videos
Noncovalent Attractions in Biomolecules
Four types of noncovalent interactions are hydrogen bonds, van der Waals forces, ionic bonds, and hydrophobic interactions.
Hydrogen bonding results from the electrostatic attraction of a hydrogen atom covalently bonded to a strong-electronegative atom like oxygen,...
Protein Folding
Protein Structure Is Critical to Its Biological Function
Proteins perform a wide range of biological functions such as catalyzing chemical reactions, providing...

