Improved side‐chain torsion potentials for the Amber ff99SB protein force field
D. E. Shaw Research · ThyssenKrupp (Germany) · +1 more institution
Abstract
Recent advances in hardware and software have enabled increasingly long molecular dynamics (MD) simulations of biomolecules, exposing certain limitations in the accuracy of the force fields used for such simulations and spurring efforts to refine these force fields. Recent modifications to the Amber and CHARMM protein force fields, for example, have improved the backbone torsion potentials, remedying deficiencies in earlier versions. Here, we further advance simulation accuracy by improving the amino acid side-chain torsion potentials of the Amber ff99SB force field. First, we used simulations of model alpha-helical systems to identify the four residue types whose rotamer distribution differed the most from…
Citation impact
- FWCI
- 42.06
- Percentile
- 100%
- References
- 36
Authors
7Topics & keywords
- Force field (fiction)
- Dihedral angle
- Torsion (gastropod)
- Molecular dynamics
- Side chain
- Protein Data Bank
- Biomolecule
- Microsecond