Optimized Molecular Dynamics Force Fields Applied to the Helix−Coil Transition of Polypeptides
National Institutes of Health · National Institute of Diabetes and Digestive and Kidney Diseases · +1 more institution
Abstract
Obtaining the correct balance of secondary structure propensities is a central priority in protein force-field development. Given that current force fields differ significantly in their alpha-helical propensities, a correction to match experimental results would be highly desirable. We have determined simple backbone energy corrections for two force fields to reproduce the fraction of helix measured in short peptides at 300 K. As validation, we show that the optimized force fields produce results in excellent agreement with nuclear magnetic resonance experiments for folded proteins and short peptides not used in the optimization. However, despite the agreement at ambient conditions, the dependence of the helix…
Citation impact
- FWCI
- 14.33
- Percentile
- 100%
- References
- 87
Authors
2Topics & keywords
- Force field (fiction)
- Helix (gastropod)
- Electromagnetic coil
- Molecular dynamics
- Enthalpy
- Alpha helix
- Magnetic field
- Chemistry
- Affordable and clean energy