Most of the decisive molecular events in biology take place at the protein-water interface. The dynamical properties of the hydration layer are therefore of fundamental importance. To characterize the dynamical heterogeneity and rotational activation energy in the hydration layer, we measured the 17O spin relaxation rate in dilute solutions of three proteins in a wide temperature range extending down to 238 K. We find that the rotational correlation time can be described by a power-law distribution with exponent 2.1 – 2.3. Except for a small fraction of secluded hydration sites, the dynamic perturbation in the hydration layer is the same for all proteins and does not differ in any essential way from the hydration shell of small organic solu...
AbstractRotational immobilization of proteins permits characterization of the internal peptide and w...
Abstract: Biological processes often involve the surfaces of proteins, where the structural and dyna...
Water is fundamental to the biochemistry of enzymes. It is well known that without a minimum amount ...
ABSTRACT Most of the decisivemolecular events in biology take place at the protein-water interface. ...
AbstractMost of the decisive molecular events in biology take place at the protein-water interface. ...
Water 2H and 17O spin relaxation is used to study water dynamics in the hydration layers of two smal...
Abstract in UndeterminedDespite being one of the most well studied compounds on earth, with tremendo...
Much of biology happens at the protein-water interface, so all dynamical processes in this region ar...
We study the translational single particle dynamics of hydration water of lysozyme upon cooling by m...
Water oxygen-17 spin relaxation was used to study hydration and dynamicsCondensed Matter Magnetic Re...
We report results on the translational dynamics of the hydration water of the lysozyme protein upon ...
Biological processes often involve the surfaces of proteins, where the structural and dynamic proper...
Hydrophobic hydration, the perturbation of the aqueous solvent near an apolar solute or interface, i...
Studies of liquid water in its supercooled region have helped us better understand the structure and...
AbstractThe water-proton spin-lattice relaxation rate constant, 1/T1, was measured as a function of ...
AbstractRotational immobilization of proteins permits characterization of the internal peptide and w...
Abstract: Biological processes often involve the surfaces of proteins, where the structural and dyna...
Water is fundamental to the biochemistry of enzymes. It is well known that without a minimum amount ...
ABSTRACT Most of the decisivemolecular events in biology take place at the protein-water interface. ...
AbstractMost of the decisive molecular events in biology take place at the protein-water interface. ...
Water 2H and 17O spin relaxation is used to study water dynamics in the hydration layers of two smal...
Abstract in UndeterminedDespite being one of the most well studied compounds on earth, with tremendo...
Much of biology happens at the protein-water interface, so all dynamical processes in this region ar...
We study the translational single particle dynamics of hydration water of lysozyme upon cooling by m...
Water oxygen-17 spin relaxation was used to study hydration and dynamicsCondensed Matter Magnetic Re...
We report results on the translational dynamics of the hydration water of the lysozyme protein upon ...
Biological processes often involve the surfaces of proteins, where the structural and dynamic proper...
Hydrophobic hydration, the perturbation of the aqueous solvent near an apolar solute or interface, i...
Studies of liquid water in its supercooled region have helped us better understand the structure and...
AbstractThe water-proton spin-lattice relaxation rate constant, 1/T1, was measured as a function of ...
AbstractRotational immobilization of proteins permits characterization of the internal peptide and w...
Abstract: Biological processes often involve the surfaces of proteins, where the structural and dyna...
Water is fundamental to the biochemistry of enzymes. It is well known that without a minimum amount ...