AbstractWe extract the thermodynamics of conformational changes in biomacromolecular complexes from the distributions of the dihedral angles of the macromolecules. These distributions are obtained from the equilibrium configurations generated via all-atom molecular dynamics simulations. The conformational thermodynamics data we obtained for calmodulin-peptide complexes using our methodology corroborate well with the experimentally observed conformational and binding entropies. The conformational free-energy changes and their contributions for different peptide-binding regions of calmodulin are evaluated microscopically
ABSTRACT To characterize the dynamic behavior of calmodulin in solution, we have carried out molecul...
ABSTRACT To characterize the dynamic behavior of calmodulin in solution, we have carried out molecul...
Every action in biology is performed by dynamic proteins that convert between multiple states in ord...
AbstractWe extract the thermodynamics of conformational changes in biomacromolecular complexes from ...
Large-scale conformational changes of proteins are usually associated with the binding of ligands. B...
Large-scale conformational changes of proteins are usually associated with the binding of ligands. B...
ABSTRACT: All-atom, explicit water molecular dynamics simulations of calcium-loaded calmodulin compl...
The distinct character of the two calmodulin (CaM) domains is reflected in different calcium and tar...
AbstractCalmodulin (CaM) is a highly flexible calcium-binding protein that mediates signal transduct...
The heterogeneous fast side-chain dynamics of proteins plays crucial roles in molecular recognition ...
Conformational free-energy differences are essential thermodynamic quantities for understanding the ...
SummaryTo better understand the interplay between protein-protein binding and protein dynamics, we a...
Atomic motions in protein molecules have been studied by molecular dynamics (MD) simulations; dynami...
Conformational entropy is a potentially important thermodynamic parameter contributing to protein fu...
Molecular recognition by proteins is fundamental to almost every biological process, particularly th...
ABSTRACT To characterize the dynamic behavior of calmodulin in solution, we have carried out molecul...
ABSTRACT To characterize the dynamic behavior of calmodulin in solution, we have carried out molecul...
Every action in biology is performed by dynamic proteins that convert between multiple states in ord...
AbstractWe extract the thermodynamics of conformational changes in biomacromolecular complexes from ...
Large-scale conformational changes of proteins are usually associated with the binding of ligands. B...
Large-scale conformational changes of proteins are usually associated with the binding of ligands. B...
ABSTRACT: All-atom, explicit water molecular dynamics simulations of calcium-loaded calmodulin compl...
The distinct character of the two calmodulin (CaM) domains is reflected in different calcium and tar...
AbstractCalmodulin (CaM) is a highly flexible calcium-binding protein that mediates signal transduct...
The heterogeneous fast side-chain dynamics of proteins plays crucial roles in molecular recognition ...
Conformational free-energy differences are essential thermodynamic quantities for understanding the ...
SummaryTo better understand the interplay between protein-protein binding and protein dynamics, we a...
Atomic motions in protein molecules have been studied by molecular dynamics (MD) simulations; dynami...
Conformational entropy is a potentially important thermodynamic parameter contributing to protein fu...
Molecular recognition by proteins is fundamental to almost every biological process, particularly th...
ABSTRACT To characterize the dynamic behavior of calmodulin in solution, we have carried out molecul...
ABSTRACT To characterize the dynamic behavior of calmodulin in solution, we have carried out molecul...
Every action in biology is performed by dynamic proteins that convert between multiple states in ord...