ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reveal energetic and kinetic details governing physiological processes ranging from cellular adhesion to drug metabolism. Although molecular-level experiments have enabled sampling of individual ligand-receptor complex dissociation events, disparities in measured unbinding force FR among these methods lead to marked variation in inferred binding energetics and kinetics at equilibrium. These discrep-ancies are documented for even the ubiquitous ligand-receptor pair, biotin-streptavidin. We investigated these disparities and examined atomic-level unbinding trajectories via steered molecular dynamics simulations, as well as via molecular force spec-...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
Atomic force microscope based single-molecule force spectroscopy provides a description of a variety...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
AbstractForced unbinding of complementary macromolecules such as ligand-receptor complexes can revea...
AbstractForced unbinding of complementary macromolecules such as ligand-receptor complexes can revea...
International audienceReceptor-ligand interactions are essential for biological function and their b...
Receptor-ligand interactions are essential for biological function and their binding strength is com...
The force required to rupture the streptavidin-biotin complex was calculated here by computer simula...
We report molecular dynamics simulations that induce, over periods of 40–500 ps, the unbinding of bi...
Novel site-specific attachment strategies combined with improvements of computational resources enab...
Novel site-specific attachment strategies combined with improvements of computational resources enab...
Novel site-specific attachment strategies combined with improvements of computational resources enab...
Novel site-specific attachment strategies combined with improvements of computational resources enab...
Interactions between ligands and receptors and subsequent ?locking? must involve some resistance to ...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
Atomic force microscope based single-molecule force spectroscopy provides a description of a variety...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
AbstractForced unbinding of complementary macromolecules such as ligand-receptor complexes can revea...
AbstractForced unbinding of complementary macromolecules such as ligand-receptor complexes can revea...
International audienceReceptor-ligand interactions are essential for biological function and their b...
Receptor-ligand interactions are essential for biological function and their binding strength is com...
The force required to rupture the streptavidin-biotin complex was calculated here by computer simula...
We report molecular dynamics simulations that induce, over periods of 40–500 ps, the unbinding of bi...
Novel site-specific attachment strategies combined with improvements of computational resources enab...
Novel site-specific attachment strategies combined with improvements of computational resources enab...
Novel site-specific attachment strategies combined with improvements of computational resources enab...
Novel site-specific attachment strategies combined with improvements of computational resources enab...
Interactions between ligands and receptors and subsequent ?locking? must involve some resistance to ...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
Dynamic force spectroscopy (DFS) makes it possible to investigate specific interactions between two ...
Atomic force microscope based single-molecule force spectroscopy provides a description of a variety...