Many biologically important ligands of proteins are large, flexible, and in many cases charged molecules that bind to extended regions on the protein surface. It is infeasible or expensive to locate such ligands on proteins with standard methods such as docking or molecular dynamics (MD) simulation. The alternative approach proposed here is scanning of a spatial and angular grid around the protein with smaller fragments of the large ligand. Energy values for complete grids can be computed efficiently with a well-known fast Fourier transform-accelerated algorithm and a physically meaningful interaction model. We show that the approach can readily incorporate flexibility of the protein and ligand. The energy grids (EGs) resulting from the lig...
The opening of the 21st century has been marked as a generation of biological science. Nowadays, the...
In this paper, a method of simulating the docking of small flexible ligands to flexible receptors in...
In this paper, a method of simulating the docking of small flexible ligands to flexible receptors in...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
\u3cp\u3eMany biologically important ligands of proteins are large, flexible, and in many cases char...
Protein interactions regulate gene expression, cell signaling, catalysis, and many other functions a...
The docking of flexible small molecule ligands to large flexible protein targets is addressed in thi...
ABSTRACT: Computing the free energy of binding a ligand to a protein is a difficult task of essentia...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
In this paper, a method of simulating the docking of small flexible ligands to flexible receptors in...
<div><p>A molecular dynamics replica exchange based method has been developed that allows rapid iden...
The opening of the 21st century has been marked as a generation of biological science. Nowadays, the...
In this paper, a method of simulating the docking of small flexible ligands to flexible receptors in...
In this paper, a method of simulating the docking of small flexible ligands to flexible receptors in...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
\u3cp\u3eMany biologically important ligands of proteins are large, flexible, and in many cases char...
Protein interactions regulate gene expression, cell signaling, catalysis, and many other functions a...
The docking of flexible small molecule ligands to large flexible protein targets is addressed in thi...
ABSTRACT: Computing the free energy of binding a ligand to a protein is a difficult task of essentia...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
In this paper, a method of simulating the docking of small flexible ligands to flexible receptors in...
<div><p>A molecular dynamics replica exchange based method has been developed that allows rapid iden...
The opening of the 21st century has been marked as a generation of biological science. Nowadays, the...
In this paper, a method of simulating the docking of small flexible ligands to flexible receptors in...
In this paper, a method of simulating the docking of small flexible ligands to flexible receptors in...