Making optimal use of empirical energy functions: Force‐field parameterization in crystal space
Radboud University Nijmegen · Triangle · +2 more institutions
Abstract
Today's energy functions are not able yet to distinguish reliably between correct and almost correct protein models. Improving these near-native models is currently a major bottle-neck in homology modeling or experimental structure determination at low resolution. Increasingly accurate energy functions are required to complete the "last mile of the protein folding problem," for example during a molecular dynamics simulation. We present a new approach to reach this goal. For 50 high resolution X-ray structures, the complete unit cell was reconstructed, including disordered water molecules, counter ions, and hydrogen atoms. Simulations were then run at the pH at which the crystal was solved, while force-field…
Citation impact
- FWCI
- 7.04
- Percentile
- 100%
- References
- 30
Authors
5Topics & keywords
- Force field (fiction)
- Molecular dynamics
- Computer science
- Statistical physics
- Algorithm
- Energy minimization
- Physics
- Chemistry
- Affordable and clean energy