AbstractA significant amount of work has been devoted to obtaining a detailed atomistic knowledge of the human hemoglobin mechanism. Despite this impressive research, to date, the ligand diffusion processes remain unclear and controversial. Using recently developed computational techniques, PELE, we are capable of addressing the ligand migration processes. First, the methodology was tested on myoglobin's CO migration, and the results were compared with the wealth of theoretical and experimental studies. Then, we explored both hemoglobin tense and relaxed states and identified the differences between the α-and β-subunits. Our results indicate that the proximal site, equivalent to the Xe1 cavity in myoglobin, is never visited. Furthermore, st...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
Neuroglobin (Ngb) is a globular protein that reversibly binds small ligands at the six coordination ...
Small molecules such as NO, O2, CO or H2 are important biological ligands that bind to metalloprotei...
AbstractA significant amount of work has been devoted to obtaining a detailed atomistic knowledge of...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
Small molecules such as NO, O2, CO or H2 are important biological ligands that bind to metalloprotei...
Small molecules such as NO, O2, CO or H2 are important biological ligands that bind to metalloprotei...
Neuroglobin (Ngb) is a globular protein that reversibly binds small ligands at the six coordination ...
Neuroglobin (Ngb) is a globular protein that reversibly binds small ligands at the six coordination ...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
Neuroglobin (Ngb) is a globular protein that reversibly binds small ligands at the six coordination ...
Small molecules such as NO, O2, CO or H2 are important biological ligands that bind to metalloprotei...
AbstractA significant amount of work has been devoted to obtaining a detailed atomistic knowledge of...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
By using multiple molecular dynamics (MD) trajectories, a quantitative description of carbon monoxid...
Small molecules such as NO, O2, CO or H2 are important biological ligands that bind to metalloprotei...
Small molecules such as NO, O2, CO or H2 are important biological ligands that bind to metalloprotei...
Neuroglobin (Ngb) is a globular protein that reversibly binds small ligands at the six coordination ...
Neuroglobin (Ngb) is a globular protein that reversibly binds small ligands at the six coordination ...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
The pathways of diffusion of a CO molecule inside a myoglobin protein and toward the solvent are inv...
Neuroglobin (Ngb) is a globular protein that reversibly binds small ligands at the six coordination ...
Small molecules such as NO, O2, CO or H2 are important biological ligands that bind to metalloprotei...