To address the large gap between time scales that can be easily reached by molecular simulations and those required to understand protein dynamics, we present a rapid self-consistent approximation of the side chain free energy at every integration step. In analogy with the adiabatic Born-Oppenheimer approximation for electronic structure, the protein backbone dynamics are simulated as preceding according to the dictates of the free energy of an instantaneously-equilibrated side chain potential. The side chain free energy is computed on the fly, allowing the protein backbone dynamics to traverse a greatly smoothed energetic landscape. This computation results in extremely rapid equilibration and sampling of the Boltzmann distribution. Our me...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
Prediction of side-chain conformations is an important component of several biological modeling appl...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
The positions of the protein side chains are added during each energy or force computation, then an ...
Proteins display characteristic dynamical signatures that appear to be universal across all proteins...
An ongoing challenge in protein chemistry is to identify the underlying interaction energies that ca...
An ongoing challenge in protein chemistry is to identify the underlying interaction energies that ca...
An ongoing challenge in protein chemistry is to identify the underlying interaction energies that ca...
An ongoing challenge in protein chemistry is to identify the underlying interaction energies that ca...
We previously developed Upside, a near-atomic, fast molecular dynamics algorithm for protein folding...
An ongoing challenge in protein chemistry is to identify the underlying interaction energies that ca...
SummaryWe report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy functi...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
We report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy function incl...
SummaryWe report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy functi...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
Prediction of side-chain conformations is an important component of several biological modeling appl...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
The positions of the protein side chains are added during each energy or force computation, then an ...
Proteins display characteristic dynamical signatures that appear to be universal across all proteins...
An ongoing challenge in protein chemistry is to identify the underlying interaction energies that ca...
An ongoing challenge in protein chemistry is to identify the underlying interaction energies that ca...
An ongoing challenge in protein chemistry is to identify the underlying interaction energies that ca...
An ongoing challenge in protein chemistry is to identify the underlying interaction energies that ca...
We previously developed Upside, a near-atomic, fast molecular dynamics algorithm for protein folding...
An ongoing challenge in protein chemistry is to identify the underlying interaction energies that ca...
SummaryWe report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy functi...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
We report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy function incl...
SummaryWe report a Monte Carlo side chain entropy (MC-SCE) method that uses a physical energy functi...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
Prediction of side-chain conformations is an important component of several biological modeling appl...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...