The vibrational dynamics of protein hydration water has been studied by incoherent neutron scattering. Experiments on a sample of fully deuterated maltose binding protein allowed us to single out the hydration water susceptibility. The main inelastic features, corresponding to hydrogen-bond bending, hydrogen-bond stretching and librational excitations, have been followed over a temperature range extending from 50 to 300 K. It turns out that the temperature dependence of the hydrogen-bond stretching contribution is quite similar to that of the mean square displacements deduced by the quasielastic signal, thus suggesting a close relationship between the anharmonicity of longitudinal phonon-like motions and the onset of diffusive molecular dyn...
AbstractInternal molecular motions of proteins are strongly affected by environmental conditions, li...
International audienceHydration water is the natural matrix of biological macromolecules and is esse...
AbstractWe present a detailed analysis of the picosecond-to-nanosecond motions of green fluorescent ...
The vibrational dynamics of protein hydration water has been studied by incoherent neutron scatterin...
AbstractTo understand the effect of hydration on protein dynamics, inelastic neutron-scattering expe...
This review article describes our neutron scattering experiments made in the past four years for the...
AbstractHydration effects on protein dynamics were investigated by comparing the frequency dependenc...
AbstractTo understand the effect of hydration on protein dynamics, inelastic neutron-scattering expe...
AbstractWe present a detailed analysis of the picosecond-to-nanosecond motions of green fluorescent ...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
Hydration water is the natural matrix of biological macromolecules and is essential for their activi...
Hydration water is the natural matrix of biological macromolecules and is essential for their activi...
AbstractInternal molecular motions of proteins are strongly affected by environmental conditions, li...
Glyde, Henry R.Neutron scattering experiments and molecular dynamics simulations are the most effect...
AbstractInternal molecular motions of proteins are strongly affected by environmental conditions, li...
International audienceHydration water is the natural matrix of biological macromolecules and is esse...
AbstractWe present a detailed analysis of the picosecond-to-nanosecond motions of green fluorescent ...
The vibrational dynamics of protein hydration water has been studied by incoherent neutron scatterin...
AbstractTo understand the effect of hydration on protein dynamics, inelastic neutron-scattering expe...
This review article describes our neutron scattering experiments made in the past four years for the...
AbstractHydration effects on protein dynamics were investigated by comparing the frequency dependenc...
AbstractTo understand the effect of hydration on protein dynamics, inelastic neutron-scattering expe...
AbstractWe present a detailed analysis of the picosecond-to-nanosecond motions of green fluorescent ...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
Hydration water is the natural matrix of biological macromolecules and is essential for their activi...
Hydration water is the natural matrix of biological macromolecules and is essential for their activi...
AbstractInternal molecular motions of proteins are strongly affected by environmental conditions, li...
Glyde, Henry R.Neutron scattering experiments and molecular dynamics simulations are the most effect...
AbstractInternal molecular motions of proteins are strongly affected by environmental conditions, li...
International audienceHydration water is the natural matrix of biological macromolecules and is esse...
AbstractWe present a detailed analysis of the picosecond-to-nanosecond motions of green fluorescent ...