AbstractThe magnetic field dependence of the proton-spin-lattice relaxation rate in rotationally immobilized proteins shows that the one-dimensional character of the protein primary structure causes a dramatic increase in the population of low-frequency motions from 10kHz to 20MHz. As a consequence, the probability and rate at which functionally critical conformational states are thermally sampled in a protein are dramatically increased as well, when compared with a three-dimensional lattice structure. Studies of protein dynamics often focus on time periods far shorter than those associated with catalytic function, but we show here that the magnetic field dependence of the proton nuclear spin-lattice relaxation rate in rotationally immobili...
AbstractThe functions of proteins depend on the dynamical behavior of their native states on a wide ...
Protein dynamics by NMR has been reviewed extensively in recent years. These surveys show decisively...
NMR relaxation provides powerful tools for obtaining information on three-dimensional structures, dy...
AbstractThe magnetic field dependence of the proton-spin-lattice relaxation rate in rotationally imm...
AbstractRotational immobilization of proteins permits characterization of the internal peptide and w...
AbstractIntrinsically disordered proteins and intrinsically disordered regions (IDRs) are ubiquitous...
International audienceIntrinsically disordered proteins and intrinsically disordered regions (IDRs) ...
International audienceThe dynamic modes and time scales sampled by intrinsically disordered proteins...
Understanding the molecular determinants underlying protein function requires the characterization o...
To probe internal motions in proteins on the 10−8−10−5 s time scale by NMR relaxation, it is necessa...
Understanding the molecular determinants underlying protein function requires the characterization o...
Intrinsically disordered proteins and intrinsically disordered regions (IDRs) are ubiquitous in the ...
International audience: Understanding the molecular determinants underlying protein function require...
15N 121H spin relaxation is a powerful method for deriving information on protein dynamics. The trad...
Structure and dynamics determine the function of proteins. This contribution discusses two aspects o...
AbstractThe functions of proteins depend on the dynamical behavior of their native states on a wide ...
Protein dynamics by NMR has been reviewed extensively in recent years. These surveys show decisively...
NMR relaxation provides powerful tools for obtaining information on three-dimensional structures, dy...
AbstractThe magnetic field dependence of the proton-spin-lattice relaxation rate in rotationally imm...
AbstractRotational immobilization of proteins permits characterization of the internal peptide and w...
AbstractIntrinsically disordered proteins and intrinsically disordered regions (IDRs) are ubiquitous...
International audienceIntrinsically disordered proteins and intrinsically disordered regions (IDRs) ...
International audienceThe dynamic modes and time scales sampled by intrinsically disordered proteins...
Understanding the molecular determinants underlying protein function requires the characterization o...
To probe internal motions in proteins on the 10−8−10−5 s time scale by NMR relaxation, it is necessa...
Understanding the molecular determinants underlying protein function requires the characterization o...
Intrinsically disordered proteins and intrinsically disordered regions (IDRs) are ubiquitous in the ...
International audience: Understanding the molecular determinants underlying protein function require...
15N 121H spin relaxation is a powerful method for deriving information on protein dynamics. The trad...
Structure and dynamics determine the function of proteins. This contribution discusses two aspects o...
AbstractThe functions of proteins depend on the dynamical behavior of their native states on a wide ...
Protein dynamics by NMR has been reviewed extensively in recent years. These surveys show decisively...
NMR relaxation provides powerful tools for obtaining information on three-dimensional structures, dy...