AbstractThe study of solutions of biomacromolecules provides an important basis for understanding the behavior of many fundamental cellular processes, such as protein folding, self-assembly, biochemical reactions, and signal transduction. Here, we describe a Brownian dynamics simulation procedure and its validation for the study of the dynamic and structural properties of protein solutions. In the model used, the proteins are treated as atomically detailed rigid bodies moving in a continuum solvent. The protein-protein interaction forces are described by the sum of electrostatic interaction, electrostatic desolvation, nonpolar desolvation, and soft-core repulsion terms. The linearized Poisson-Boltzmann equation is solved to compute electros...
Intrinsically disordered proteins (IDPs) have recently become systems of great interest due to their...
AbstractCompartmentation of proteins in cells is important to proper cell function. Interactions of ...
AbstractWe simulate the adsorption of lysozyme on a solid surface, using Brownian dynamics simulatio...
We have developed a Brownian dynamics algorithm for simulating probe and self-diffusion in concentra...
We developed theories and algorithms for two coarse-grained implicit solvent models that can be depl...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
A unified model is presented for protein-protein association processes that are under the influences...
The interiors of all living cells are highly crowded with macromolecules, which differs considerably...
We present a newly adapted Brownian-Dynamics (BD)-based protein docking method for predicting native...
Diffusion is a phenomenon of very widespread importance in molecular biophysics. Diffusion can deter...
AbstractThe high total concentration of macromolecules, often referred to as macromolecular crowding...
A novel multiple conformations Monte Carlo (mcMC) computational method is presented that allows the ...
Protein-protein interactions (PPIs) play a crucial role in the regulation of protein activity, and a...
AbstractContinuum solvent models have been employed in past years for understanding processes such a...
The high concentration of macromolecules (i.e., macromolecular crowding) in cellular environments le...
Intrinsically disordered proteins (IDPs) have recently become systems of great interest due to their...
AbstractCompartmentation of proteins in cells is important to proper cell function. Interactions of ...
AbstractWe simulate the adsorption of lysozyme on a solid surface, using Brownian dynamics simulatio...
We have developed a Brownian dynamics algorithm for simulating probe and self-diffusion in concentra...
We developed theories and algorithms for two coarse-grained implicit solvent models that can be depl...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
A unified model is presented for protein-protein association processes that are under the influences...
The interiors of all living cells are highly crowded with macromolecules, which differs considerably...
We present a newly adapted Brownian-Dynamics (BD)-based protein docking method for predicting native...
Diffusion is a phenomenon of very widespread importance in molecular biophysics. Diffusion can deter...
AbstractThe high total concentration of macromolecules, often referred to as macromolecular crowding...
A novel multiple conformations Monte Carlo (mcMC) computational method is presented that allows the ...
Protein-protein interactions (PPIs) play a crucial role in the regulation of protein activity, and a...
AbstractContinuum solvent models have been employed in past years for understanding processes such a...
The high concentration of macromolecules (i.e., macromolecular crowding) in cellular environments le...
Intrinsically disordered proteins (IDPs) have recently become systems of great interest due to their...
AbstractCompartmentation of proteins in cells is important to proper cell function. Interactions of ...
AbstractWe simulate the adsorption of lysozyme on a solid surface, using Brownian dynamics simulatio...