We have developed a Brownian dynamics algorithm for simulating probe and self-diffusion in concentrated solutions of DNA and protein. In these simulations, proteins are represented as spheres with radii given by their hydrodynamic radii, while DNA is modeled as a wormlike chain of hydrodynamically equivalent spherical frictional elements. The molecular interaction potentials employed by the program allow for intramolecular stretching and bending motions of the DNA chains, short-range Lennard-Jones interactions, and long-range electrostatic interactions. To test the program, we have carried out simulations of bovine serum albumin (BSA) probe diffusion and DNA self-diffusion in solutions of short-chain DNA as a function of both DNA concentrat...
A two-dimensional version of the generalized Smoluchowski equation is used to analyze the time (or d...
The high concentration of macromolecules (i.e., macromolecular crowding) in cellular environments le...
The high concentration of macromolecules (i.e., macromolecular crowding) in cellular environments le...
We have developed a Brownian dynamics algorithm for simulating probe and self-diffusion in concentra...
Diffusion is a phenomenon of very widespread importance in molecular biophysics. Diffusion can deter...
DNA binding proteins efficiently search for their cognitive sites on long genomic DNA by combining 3...
AbstractThe study of solutions of biomacromolecules provides an important basis for understanding th...
The idea that non-specific DNA-binding proteins are capable of finding their cognate sites on DNA mu...
ABSTRACT Manipulation of individual DNA molecules by optical tweezers has made it possible to tie th...
AbstractManipulation of individual DNA molecules by optical tweezers has made it possible to tie the...
Earlier studies by Chow and Skolnick suggest that the internal motions of bacterial DNA may be gover...
We use a lattice Boltzmann based Brownian dynamics simulation to investigate the dependence of DNA t...
textThe sequence-dependent curvature and flexibility of DNA is critical for many biochemically impor...
As the field of molecular dynamics simulation utilizing the force fields is moving toward more compl...
The application of a second-order Brownian Dynamics (BD) algorithm to the computation of the dynamic...
A two-dimensional version of the generalized Smoluchowski equation is used to analyze the time (or d...
The high concentration of macromolecules (i.e., macromolecular crowding) in cellular environments le...
The high concentration of macromolecules (i.e., macromolecular crowding) in cellular environments le...
We have developed a Brownian dynamics algorithm for simulating probe and self-diffusion in concentra...
Diffusion is a phenomenon of very widespread importance in molecular biophysics. Diffusion can deter...
DNA binding proteins efficiently search for their cognitive sites on long genomic DNA by combining 3...
AbstractThe study of solutions of biomacromolecules provides an important basis for understanding th...
The idea that non-specific DNA-binding proteins are capable of finding their cognate sites on DNA mu...
ABSTRACT Manipulation of individual DNA molecules by optical tweezers has made it possible to tie th...
AbstractManipulation of individual DNA molecules by optical tweezers has made it possible to tie the...
Earlier studies by Chow and Skolnick suggest that the internal motions of bacterial DNA may be gover...
We use a lattice Boltzmann based Brownian dynamics simulation to investigate the dependence of DNA t...
textThe sequence-dependent curvature and flexibility of DNA is critical for many biochemically impor...
As the field of molecular dynamics simulation utilizing the force fields is moving toward more compl...
The application of a second-order Brownian Dynamics (BD) algorithm to the computation of the dynamic...
A two-dimensional version of the generalized Smoluchowski equation is used to analyze the time (or d...
The high concentration of macromolecules (i.e., macromolecular crowding) in cellular environments le...
The high concentration of macromolecules (i.e., macromolecular crowding) in cellular environments le...