ABSTRACT: Until now it has been impractical to observe protein folding in silico for proteins larger than 50 residues. Limitations of both force field accuracy and computational efficiency make the folding problem very challenging. Here we employ discrete molecular dynamics (DMD) simulations with an all-atom force field to fold fast-folding proteins. We extend the DMD force field by introducing long-range electrostatic interactions to model salt-bridges and a sequence-dependent semiempirical potential accounting for natural tendencies of certain amino acid sequences to form specific secondary structures. We enhance the computational performance by parallelizing the DMD algorithm. Using a small number of commodity computers, we achieve sampl...
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 ...
Protein folding is an important and challenging problem in molecular biology. During the last two de...
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...
SummaryDiscrete molecular dynamics (DMD) is a rapid sampling method used in protein folding and aggr...
Discrete molecular dynamics (DMD) is a rapid sampling method used in protein folding and aggregation...
We present a refinement of the Coarse Grained PACSAB force field for Discrete Molecular Dynamics (DM...
AbstractAll-atom molecular dynamics (MD) simulations of protein folding allow analysis of the foldin...
Background: Many attempts have been made to resolve in time the folding of model proteins in compute...
Advances in computer hardware, software and algorithms have now made it possible to run atomisticall...
Proteins in solution fold in time scales ranging from microseconds to seconds. A computational appro...
Background: Many attempts have been made to resolve in time the folding of model proteins in compute...
Folding of four fast-folding proteins, including chignolin, Trp-cage, villin headpiece and WW domain...
Ab initio protein folding via physical-based all-atom simulation is still quite challenging. Using a...
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 ...
Protein folding is an important and challenging problem in molecular biology. During the last two de...
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...
SummaryDiscrete molecular dynamics (DMD) is a rapid sampling method used in protein folding and aggr...
Discrete molecular dynamics (DMD) is a rapid sampling method used in protein folding and aggregation...
We present a refinement of the Coarse Grained PACSAB force field for Discrete Molecular Dynamics (DM...
AbstractAll-atom molecular dynamics (MD) simulations of protein folding allow analysis of the foldin...
Background: Many attempts have been made to resolve in time the folding of model proteins in compute...
Advances in computer hardware, software and algorithms have now made it possible to run atomisticall...
Proteins in solution fold in time scales ranging from microseconds to seconds. A computational appro...
Background: Many attempts have been made to resolve in time the folding of model proteins in compute...
Folding of four fast-folding proteins, including chignolin, Trp-cage, villin headpiece and WW domain...
Ab initio protein folding via physical-based all-atom simulation is still quite challenging. Using a...
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 ...
Protein folding is an important and challenging problem in molecular biology. During the last two de...