A solution-state NMR method is proposed to investigate the dynamics of proteins that undergo reversible association with nanoparticles (NPs). We applied the recently developed dark-state exchange saturation transfer experiment to obtain residue-level dynamic information on a NP-adsorbed protein in the form of transverse spin relaxation rates, R2bound. Based on dynamic light scattering, fluorescence, circular dichroism, and NMR spectroscopy data, we show that the test protein, human liver fatty acid binding protein, interacts reversibly and peripherally with liposomal NPs without experiencing significant structural changes. The significant but modest saturation transfer from the bound state observed at 14.1 and 23.5 T static magnetic fields,...
International audienceDetermination of the environment surrounding a protein is often key to underst...
Membrane proteins (MPs) play essential roles in numerous cellular processes. Because around 70% of t...
International audienceIntrinsically disordered proteins (IDPs) are flexible biomolecules whose essen...
A solution-state NMR method is proposed to investigate the dynamics of proteins that undergo reversi...
The successful application of nanomaterials in biosciences necessitates an in-depth understanding of...
Recent biochemical and technical developments permit residue-specific solution NMR measurements of m...
Nuclear magnetic resonance spectroscopy (NMR) has been used to determine the kinetics of ligand bind...
NMR relaxation provides powerful tools for obtaining information on three-dimensional structures, dy...
The global motions and exchange kinetics of a model protein, ubiquitin, bound to the surface of nega...
The spontaneous formation of a protein corona on a nanoparticle surface influences the physiological...
Determination of the environment surrounding a protein is often key to understanding function, and c...
Understanding protein function is an important goal of biological and medical research. It is genera...
The favorable interaction between proteins and nanoparticles has sparked potential applications of n...
The spontaneous formation of a protein corona on a nanoparticle surface influences the physiological...
The effect of extrinsic paramagnetic probes on NMR relaxation rates for surface mapping of proteins ...
International audienceDetermination of the environment surrounding a protein is often key to underst...
Membrane proteins (MPs) play essential roles in numerous cellular processes. Because around 70% of t...
International audienceIntrinsically disordered proteins (IDPs) are flexible biomolecules whose essen...
A solution-state NMR method is proposed to investigate the dynamics of proteins that undergo reversi...
The successful application of nanomaterials in biosciences necessitates an in-depth understanding of...
Recent biochemical and technical developments permit residue-specific solution NMR measurements of m...
Nuclear magnetic resonance spectroscopy (NMR) has been used to determine the kinetics of ligand bind...
NMR relaxation provides powerful tools for obtaining information on three-dimensional structures, dy...
The global motions and exchange kinetics of a model protein, ubiquitin, bound to the surface of nega...
The spontaneous formation of a protein corona on a nanoparticle surface influences the physiological...
Determination of the environment surrounding a protein is often key to understanding function, and c...
Understanding protein function is an important goal of biological and medical research. It is genera...
The favorable interaction between proteins and nanoparticles has sparked potential applications of n...
The spontaneous formation of a protein corona on a nanoparticle surface influences the physiological...
The effect of extrinsic paramagnetic probes on NMR relaxation rates for surface mapping of proteins ...
International audienceDetermination of the environment surrounding a protein is often key to underst...
Membrane proteins (MPs) play essential roles in numerous cellular processes. Because around 70% of t...
International audienceIntrinsically disordered proteins (IDPs) are flexible biomolecules whose essen...