Accelerated molecular dynamics: A promising and efficient simulation method for biomolecules
University of California San Diego · Center for Theoretical Biological Physics · +1 more institution
Abstract
Many interesting dynamic properties of biological molecules cannot be simulated directly using molecular dynamics because of nanosecond time scale limitations. These systems are trapped in potential energy minima with high free energy barriers for large numbers of computational steps. The dynamic evolution of many molecular systems occurs through a series of rare events as the system moves from one potential energy basin to another. Therefore, we have proposed a robust bias potential function that can be used in an efficient accelerated molecular dynamics approach to simulate the transition of high energy barriers without any advance knowledge of the location of either the potential energy wells or saddle…
Citation impact
- FWCI
- 11.26
- Percentile
- 100%
- References
- 27
Authors
3- DHDonald HamelbergCorresponding
University of California San Diego, Center for Theoretical Biological Physics
- JMJohn Mongan
University of California San Diego, Center for Theoretical Biological Physics
- JAJ. Andrew McCammon
Howard Hughes Medical Institute, University of California San Diego, Center for Theoretical Biological Physics
Topics & keywords
- Maxima and minima
- Molecular dynamics
- Potential energy
- Energy landscape
- Saddle point
- Statistical physics
- Potential energy surface
- Energy (signal processing)
- Affordable and clean energy