AbstractA laminar flow chamber was used to study single molecule interactions between biotinylated surfaces and streptavidin-coated spheres subjected to a hydrodynamic drag lower than a piconewton. Spheres were tracked with 20ms and 40nm resolution. They displayed multiple arrests lasting between a few tens of milliseconds and several minutes or more. Analysis of about 500,000 positions revealed that streptavidin-biotin interaction was multiphasic: transient bound states displayed a rupture frequency of 5.3s−1 and a rate of transition toward a more stable configuration of 1.3s−1. These parameters did not display any significant change when the force exerted on bonds varied between 3.5 and 11 pN. However, the apparent rate of streptavidin-bi...
International audienceWe used a combination of laminar flow chamber and reflection interference micr...
International audienceReceptor-ligand interactions are essential for biological function and their b...
To understand and design molecular functions on the basis of molecular recognition processes, the mi...
AbstractA laminar flow chamber was used to study single molecule interactions between biotinylated s...
The force required to rupture the streptavidin-biotin complex was calculated here by computer simula...
Receptor-ligand interactions are essential for biological function and their binding strength is com...
International audienceThe most important function of proteins may well be to bind to other biomolecu...
International audienceDuring the last decade, many investigators developed new methodologies allowin...
Using atomic force microscopy (AFM) we performed dynamic force measurements of the adhesive forces i...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
The Streptomyces avidinii protein streptavidin binds the small molecule biotin (vitamin H / B₇) with...
We report molecular dynamics simulations that induce, over periods of 40–500 ps, the unbinding of bi...
The widely used interaction of the homotetramer streptavidin with the small molecule biotin has been...
Force spectroscopy measurements of the rupture of the molecular bond between biotin and streptavidin...
Novel site-specific attachment strategies combined with improvements of computational resources enab...
International audienceWe used a combination of laminar flow chamber and reflection interference micr...
International audienceReceptor-ligand interactions are essential for biological function and their b...
To understand and design molecular functions on the basis of molecular recognition processes, the mi...
AbstractA laminar flow chamber was used to study single molecule interactions between biotinylated s...
The force required to rupture the streptavidin-biotin complex was calculated here by computer simula...
Receptor-ligand interactions are essential for biological function and their binding strength is com...
International audienceThe most important function of proteins may well be to bind to other biomolecu...
International audienceDuring the last decade, many investigators developed new methodologies allowin...
Using atomic force microscopy (AFM) we performed dynamic force measurements of the adhesive forces i...
AbstractForce spectroscopy measurements of the rupture of the molecular bond between biotin and stre...
The Streptomyces avidinii protein streptavidin binds the small molecule biotin (vitamin H / B₇) with...
We report molecular dynamics simulations that induce, over periods of 40–500 ps, the unbinding of bi...
The widely used interaction of the homotetramer streptavidin with the small molecule biotin has been...
Force spectroscopy measurements of the rupture of the molecular bond between biotin and streptavidin...
Novel site-specific attachment strategies combined with improvements of computational resources enab...
International audienceWe used a combination of laminar flow chamber and reflection interference micr...
International audienceReceptor-ligand interactions are essential for biological function and their b...
To understand and design molecular functions on the basis of molecular recognition processes, the mi...