The force required to rupture the streptavidin-biotin complex was calculated here by computer simulations. The computed force agrees well with that obtained by recent single molecule atomic force microscope experiments. These simulations suggest a detailed multiple-pathway rupture mechanism involving five major unbinding steps. Binding forces and specificity are attributed to a hydrogen bond network between the biotin ligand and residues within the binding pocket of streptavidin. During rupture, additional water bridges substantially enhance the stability of the complex and even dominate the binding interactions. In contrast, steric restraints do not appear to contribute to the binding forces, although conformational motions were observed
Understanding how protein oligomerization affects the stability of monomers in self-assembled struct...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
The force required to rupture the streptavidin-biotin complex was calculated here by computer simula...
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...
We report molecular dynamics simulations that induce, over periods of 40–500 ps, the unbinding of bi...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
<div><p>The widely used interaction of the homotetramer streptavidin with the small molecule biotin ...
The pathway of ligand dissociation and how binding sites respond to force are not well understood fo...
International audienceReceptor-ligand interactions are essential for biological function and their b...
The pathway of ligand dissociation and how binding sites respond to force are not well understood fo...
The Streptomyces avidinii protein streptavidin binds the small molecule biotin (vitamin H / B₇) with...
Understanding how protein oligomerization affects the stability of monomers in self-assembled struct...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
The force required to rupture the streptavidin-biotin complex was calculated here by computer simula...
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...
We report molecular dynamics simulations that induce, over periods of 40–500 ps, the unbinding of bi...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
<div><p>The widely used interaction of the homotetramer streptavidin with the small molecule biotin ...
The pathway of ligand dissociation and how binding sites respond to force are not well understood fo...
International audienceReceptor-ligand interactions are essential for biological function and their b...
The pathway of ligand dissociation and how binding sites respond to force are not well understood fo...
The Streptomyces avidinii protein streptavidin binds the small molecule biotin (vitamin H / B₇) with...
Understanding how protein oligomerization affects the stability of monomers in self-assembled struct...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...
ABSTRACT Forced unbinding of complementary macromolecules such as ligand-receptor complexes can reve...