Advances in computer hardware, software and algorithms have now made it possible to run atomistically detailed, physics-based molecular dynamics simulations of sufficient length to observe multiple instances of protein folding and unfolding within a single equilibrium trajectory. Although such studies have already begun to provide new insights into the process of protein folding, realizing the full potential of this approach will depend not only on simulation speed, but on the accuracy of the physical models (‘force fields’) on which such simulations are based. While experimental data are not available for comparison with all of the salient characteristics observable in long protein-folding simulations, we examine here the extent to which c...
AbstractAll-atom molecular dynamics (MD) simulations of protein folding allow analysis of the foldin...
Computer simulations of biological systems provide novel data while both supporting and challenging ...
Proteins are complex physical systems of great biological and pharmaceutical interest. Computer sim...
Advances in computer hardware, software and algorithms have now made it possible to run atomisticall...
AbstractMolecular dynamics simulations hold the promise of providing an atomic-level description of ...
AbstractLong timescale (>1 μs) molecular dynamics simulations of protein folding offer a powerful to...
Proteins are complex physical systems of great biological and pharmaceutical interest. Computer simu...
AbstractAll-atom molecular dynamics (MD) simulations of protein folding allow analysis of the foldin...
The millisecond time scale needed for molecular dynamics simulations to approach the quantitative st...
Background: Many attempts have been made to resolve in time the folding of model proteins in compute...
AbstractMolecular dynamics simulations hold the promise of providing an atomic-level description of ...
Computer simulation provides an increasingly realistic picture of large-scale conformational change ...
Until now it has been impractical to observe protein folding in silico for proteins larger than 50 r...
Until now it has been impractical to observe protein folding in silico for proteins larger than 50 r...
Until now it has been impractical to observe protein folding in silico for proteins larger than 50 r...
AbstractAll-atom molecular dynamics (MD) simulations of protein folding allow analysis of the foldin...
Computer simulations of biological systems provide novel data while both supporting and challenging ...
Proteins are complex physical systems of great biological and pharmaceutical interest. Computer sim...
Advances in computer hardware, software and algorithms have now made it possible to run atomisticall...
AbstractMolecular dynamics simulations hold the promise of providing an atomic-level description of ...
AbstractLong timescale (>1 μs) molecular dynamics simulations of protein folding offer a powerful to...
Proteins are complex physical systems of great biological and pharmaceutical interest. Computer simu...
AbstractAll-atom molecular dynamics (MD) simulations of protein folding allow analysis of the foldin...
The millisecond time scale needed for molecular dynamics simulations to approach the quantitative st...
Background: Many attempts have been made to resolve in time the folding of model proteins in compute...
AbstractMolecular dynamics simulations hold the promise of providing an atomic-level description of ...
Computer simulation provides an increasingly realistic picture of large-scale conformational change ...
Until now it has been impractical to observe protein folding in silico for proteins larger than 50 r...
Until now it has been impractical to observe protein folding in silico for proteins larger than 50 r...
Until now it has been impractical to observe protein folding in silico for proteins larger than 50 r...
AbstractAll-atom molecular dynamics (MD) simulations of protein folding allow analysis of the foldin...
Computer simulations of biological systems provide novel data while both supporting and challenging ...
Proteins are complex physical systems of great biological and pharmaceutical interest. Computer sim...