The structure and dynamics of the full unit cell of a protein (bovine pancreatic trypsin inhibitor) containing 4 protein molecules and 560 water molecules have been simulated by using the molecular dynamics method. The obtained structure, atom positional fluctuations, and structure factors are compared with x-ray values. A way of calculating the motional contributions to structure factors is proposed
Characterization of the hydrated state of a protein is crucial for understanding its structural stab...
Water plays an essential role in most biological processes. Water molecules solvating biomolecules a...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...
The structure and dynamics of the full unit cell of a protein (bovine pancreatic trypsin inhibitor) ...
Nanosecond molecular dynamics simulations of bovine pancreatic trypsin inhibitor and lysozyme in wat...
The application of molecular dynamics computer simulation methods to study the dynamics of proteins ...
In this paper we present a molecular dynamics (MD) simulation of subtilisin BPN' in a crystalline en...
Nanosecond molecular dynamics simulations of bovine pancreatic trypsin inhibitor and lysozyme in wat...
Knowledge about the architecture of macromolecules has been derived primarily from crystallography. ...
Crystal structures of proteins are under the influence from the crystal environment. In this study, ...
AbstractMolecular dynamics simulations of bovine pancreatic trypsin inhibitor in water have been per...
A computer simulation method is proposed to study the effects of hydrodynamic interactions on protei...
Protein structural biology came a long way since the determination of the first three-dimensional st...
Until the 1970s, chemical systems and phenomena were studied using two basic approaches, wet laborat...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
Characterization of the hydrated state of a protein is crucial for understanding its structural stab...
Water plays an essential role in most biological processes. Water molecules solvating biomolecules a...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...
The structure and dynamics of the full unit cell of a protein (bovine pancreatic trypsin inhibitor) ...
Nanosecond molecular dynamics simulations of bovine pancreatic trypsin inhibitor and lysozyme in wat...
The application of molecular dynamics computer simulation methods to study the dynamics of proteins ...
In this paper we present a molecular dynamics (MD) simulation of subtilisin BPN' in a crystalline en...
Nanosecond molecular dynamics simulations of bovine pancreatic trypsin inhibitor and lysozyme in wat...
Knowledge about the architecture of macromolecules has been derived primarily from crystallography. ...
Crystal structures of proteins are under the influence from the crystal environment. In this study, ...
AbstractMolecular dynamics simulations of bovine pancreatic trypsin inhibitor in water have been per...
A computer simulation method is proposed to study the effects of hydrodynamic interactions on protei...
Protein structural biology came a long way since the determination of the first three-dimensional st...
Until the 1970s, chemical systems and phenomena were studied using two basic approaches, wet laborat...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
Characterization of the hydrated state of a protein is crucial for understanding its structural stab...
Water plays an essential role in most biological processes. Water molecules solvating biomolecules a...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...