Non-selective NMR relaxation of protein and water protons at various resonance frequencies as well as Time Domain Dielectric Spectroscopy (TDDS) were applied to study the molecular motions in lysozyme and myoglobin solutions. It was found that the correlation function of the protein motion defined by means of all these methods can be presented as a sum of three components having substantially different correlation times. Both NMR and TDDS experimental data were treated on the basis of approach according to which these components of the correlation function correspond to three different kinds of protein motion, namely 1) internal local motion, 2) anisotropic rotational Brownian diffusion and 3) translational Brownian diffusion. According to ...
Understanding the function of a protein requires not only knowledge of its tertiary structure but al...
Dielectric relaxation and NMR spectrum of water in biological systems such as proteins, DNA, and rev...
Copyright © 2019 American Chemical Society. The study of intermolecular interactions of proteins has...
The results of dynamic protein behavior in solution studied by time domain dielectric spectroscopy (...
The results of the investigation of protein molecule dynamic in solution by Time Domain Dielectric S...
The aqueous solutions of the small globular proteins (myoglobin of horse, lysozyme of hen's egg and ...
NMR provides a method to study the dynamics of proteins and the possibility of gaining an insight in...
The results of the investigation of structure and dynamic behavior of protein in solution by time-do...
Proton nuclear magnetic resonance relaxation investigations of water dynamics in hydrated protein po...
NMR relaxation provides powerful tools for obtaining information on three-dimensional structures, dy...
NMR techniques can give insight into a wide variety of motional events that occur in proteins over a...
The internal motions of biomolecules were examined by analyzing NMR relaxation in terms of the model...
Dielectric spectroscopy is a robust method to investigate relaxations of molecular dipoles. It is pa...
The relaxation processes of the protein lysozyme in glycerol-water solutions were studied with Diele...
Dielectric relaxation and NMR spectrum of water in biological systems such as proteins, DNA, and rev...
Understanding the function of a protein requires not only knowledge of its tertiary structure but al...
Dielectric relaxation and NMR spectrum of water in biological systems such as proteins, DNA, and rev...
Copyright © 2019 American Chemical Society. The study of intermolecular interactions of proteins has...
The results of dynamic protein behavior in solution studied by time domain dielectric spectroscopy (...
The results of the investigation of protein molecule dynamic in solution by Time Domain Dielectric S...
The aqueous solutions of the small globular proteins (myoglobin of horse, lysozyme of hen's egg and ...
NMR provides a method to study the dynamics of proteins and the possibility of gaining an insight in...
The results of the investigation of structure and dynamic behavior of protein in solution by time-do...
Proton nuclear magnetic resonance relaxation investigations of water dynamics in hydrated protein po...
NMR relaxation provides powerful tools for obtaining information on three-dimensional structures, dy...
NMR techniques can give insight into a wide variety of motional events that occur in proteins over a...
The internal motions of biomolecules were examined by analyzing NMR relaxation in terms of the model...
Dielectric spectroscopy is a robust method to investigate relaxations of molecular dipoles. It is pa...
The relaxation processes of the protein lysozyme in glycerol-water solutions were studied with Diele...
Dielectric relaxation and NMR spectrum of water in biological systems such as proteins, DNA, and rev...
Understanding the function of a protein requires not only knowledge of its tertiary structure but al...
Dielectric relaxation and NMR spectrum of water in biological systems such as proteins, DNA, and rev...
Copyright © 2019 American Chemical Society. The study of intermolecular interactions of proteins has...