A new method, weighted-ensemble Brownian dynamics, is proposed for the simulation of protein-association reactions and other events whose frequencies of outcomes are constricted by free energy barriers. The method features a weighted ensemble of trajectories in configuration space with energy levels dictating the proper correspondence between "particles" and probability. Instead of waiting a very long time for an unlikely event to occur, the probability packets are split, and small packets of probability are allowed to diffuse almost immediately into regions of configuration space that are less likely to be sampled. The method has been applied to the Northrup and Erickson (1992) model of docking-type diffusion-limited reactions and yields r...
We present a new algorithm for simulating reaction-diffusion equations at single-particle resolution...
We develop a Split Reactive Brownian Dynamics (SRBD) algorithm for particle simulations of reaction-...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
A new method, weighted-ensemble Brownian dynamics, is proposed for the simulation of protein-associa...
AbstractWe discuss here the implementation of the Weighted Ensemble Brownian (WEB) dynamics algorith...
AbstractA reaction probability is required to calculate the rate constant of a diffusion-dominated r...
AbstractAn enhanced sampling method—biased Brownian dynamics—is developed for the calculation of dif...
Molecular dynamics simulations can, in principle, provide detailed views of protein-protein associat...
75 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.A reaction probability is requ...
To directly simulate rare events using atomistic molecular dynamics is a significant challenge in co...
Activated processes driven by rare fluctuations are discussed in this thesis. Understanding the dyna...
We introduce an extension to the weighted ensemble (WE) path sampling method to restrict sampling to...
A unified model is presented for protein-protein association processes that are under the influences...
AbstractTheory and computation have long been used to rationalize the experimental association rate ...
Even when the underlying dynamics are known, studying the emergent behavior of stochastic biological...
We present a new algorithm for simulating reaction-diffusion equations at single-particle resolution...
We develop a Split Reactive Brownian Dynamics (SRBD) algorithm for particle simulations of reaction-...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
A new method, weighted-ensemble Brownian dynamics, is proposed for the simulation of protein-associa...
AbstractWe discuss here the implementation of the Weighted Ensemble Brownian (WEB) dynamics algorith...
AbstractA reaction probability is required to calculate the rate constant of a diffusion-dominated r...
AbstractAn enhanced sampling method—biased Brownian dynamics—is developed for the calculation of dif...
Molecular dynamics simulations can, in principle, provide detailed views of protein-protein associat...
75 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.A reaction probability is requ...
To directly simulate rare events using atomistic molecular dynamics is a significant challenge in co...
Activated processes driven by rare fluctuations are discussed in this thesis. Understanding the dyna...
We introduce an extension to the weighted ensemble (WE) path sampling method to restrict sampling to...
A unified model is presented for protein-protein association processes that are under the influences...
AbstractTheory and computation have long been used to rationalize the experimental association rate ...
Even when the underlying dynamics are known, studying the emergent behavior of stochastic biological...
We present a new algorithm for simulating reaction-diffusion equations at single-particle resolution...
We develop a Split Reactive Brownian Dynamics (SRBD) algorithm for particle simulations of reaction-...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...