We present an overview of protein dynamics based mostly on results of neutron scattering, dielectric relaxation spectroscopy and molecular dynamics simulations. We identify several major classes of protein motions on the time scale from faster than picoseconds to several microseconds, and discuss the coupling of these processes to solvent dynamics. Our analysis suggests that the microsecond backbone relaxation process might be the main structural relaxation of the protein that defines its glass transition temperature, while faster processes present some localized secondary relaxations. Based on the overview, we formulate a general picture of protein dynamics and discuss the challenges in this field.Applied Science
International audienceNuclear magnetic resonance (NMR) spin relaxation experiments currently probe m...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
International audienceOne of the fundamental challenges of physical biology is to understand the rel...
We present an overview of protein dynamics based mostly on results of neutron scattering, dielectric...
First published as an Advance Article on the web 1st June 2005 The present article gives an overview...
Protein functions require conformational motions. We show here that the dominant conformational moti...
Structure and dynamics determine the function of proteins. This contribution discusses two aspects o...
We study the translational single particle dynamics of hydration water of lysozyme upon cooling by m...
AbstractWe provide evidence that the onset of functional dynamics of folded proteins with elevated t...
AbstractWe elucidate the physics of protein dynamical transition via 10–100-ns molecular dynamics si...
ABSTRACT Proteins undergo an apparent dynamical transition on temperature variation that has been co...
We provide evidence that the onset of functional dynamics of folded proteins with elevated temperatu...
International audienceProtein dynamics covers multiple spatiotemporal scale processes, among which s...
Biological life depends on motion, and this manifests itself in proteins that display motion over a ...
Glasses, supercooled liquids and proteins share common properties, in particular the existence of an...
International audienceNuclear magnetic resonance (NMR) spin relaxation experiments currently probe m...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
International audienceOne of the fundamental challenges of physical biology is to understand the rel...
We present an overview of protein dynamics based mostly on results of neutron scattering, dielectric...
First published as an Advance Article on the web 1st June 2005 The present article gives an overview...
Protein functions require conformational motions. We show here that the dominant conformational moti...
Structure and dynamics determine the function of proteins. This contribution discusses two aspects o...
We study the translational single particle dynamics of hydration water of lysozyme upon cooling by m...
AbstractWe provide evidence that the onset of functional dynamics of folded proteins with elevated t...
AbstractWe elucidate the physics of protein dynamical transition via 10–100-ns molecular dynamics si...
ABSTRACT Proteins undergo an apparent dynamical transition on temperature variation that has been co...
We provide evidence that the onset of functional dynamics of folded proteins with elevated temperatu...
International audienceProtein dynamics covers multiple spatiotemporal scale processes, among which s...
Biological life depends on motion, and this manifests itself in proteins that display motion over a ...
Glasses, supercooled liquids and proteins share common properties, in particular the existence of an...
International audienceNuclear magnetic resonance (NMR) spin relaxation experiments currently probe m...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
International audienceOne of the fundamental challenges of physical biology is to understand the rel...