The dynamic aspect of proteins is fundamental to understanding protein stability and function. One of the goals of NMR studies of side-chain dynamics in proteins is to relate spin relaxation rates to discrete conformational states and the timescales of interconversion between those states. Reported here is a physical analysis of side-chain dynamics that occur on a timescale commensurate with monitoring by 2H spin relaxation within methyl groups. Motivated by observations made from tens-of-nanoseconds long MD simulations on the small protein eglin c in explicit solvent, we propose a simple molecular mechanics-based model for the motions of side-chain methyl groups. By using a Boltzmann distribution within rotamers, and by considering the tra...
International audienceNuclear magnetic resonance (NMR) spin relaxation experiments currently probe m...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
Protein side-chain motions are involved in many important biological processes including enzymatic c...
NMR spin relaxation of 2H nuclei in 13CH2D groups is a powerful method for studying side-chain motio...
NMR spin relaxation of 2H nuclei in 13CH2D groups is a powerful method for studying side-chain motio...
This study presents the first application of the model-free analysis (MFA) (Meiler in J Am Chem Soc ...
Falk Hoffmann (Ruhr University Bochum) presented his work on improving torsional barriers associated...
Motions of proteins are essential for the performance of their functions. Aliphatic protein side cha...
Values of S2CH and S2NH order parameters derived from NMR relaxation measurements on proteins cannot...
Nuclear Magnetic Resonance (NMR) is a tool of choice to characterize molecular motions. In biologica...
The internal motions of biomolecules were examined by analyzing NMR relaxation in terms of the model...
S2 order parameters, side-chain dynamics A simple analytical model is presented for the prediction o...
Conformational flexibility is key to the function of many proteins and is thus an important focus fo...
An approach is presented to directly simulate the dynamics of methyl groups in protein side-chains, ...
International audienceNuclear magnetic resonance (NMR) spin relaxation experiments currently probe m...
International audienceNuclear magnetic resonance (NMR) spin relaxation experiments currently probe m...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
Protein side-chain motions are involved in many important biological processes including enzymatic c...
NMR spin relaxation of 2H nuclei in 13CH2D groups is a powerful method for studying side-chain motio...
NMR spin relaxation of 2H nuclei in 13CH2D groups is a powerful method for studying side-chain motio...
This study presents the first application of the model-free analysis (MFA) (Meiler in J Am Chem Soc ...
Falk Hoffmann (Ruhr University Bochum) presented his work on improving torsional barriers associated...
Motions of proteins are essential for the performance of their functions. Aliphatic protein side cha...
Values of S2CH and S2NH order parameters derived from NMR relaxation measurements on proteins cannot...
Nuclear Magnetic Resonance (NMR) is a tool of choice to characterize molecular motions. In biologica...
The internal motions of biomolecules were examined by analyzing NMR relaxation in terms of the model...
S2 order parameters, side-chain dynamics A simple analytical model is presented for the prediction o...
Conformational flexibility is key to the function of many proteins and is thus an important focus fo...
An approach is presented to directly simulate the dynamics of methyl groups in protein side-chains, ...
International audienceNuclear magnetic resonance (NMR) spin relaxation experiments currently probe m...
International audienceNuclear magnetic resonance (NMR) spin relaxation experiments currently probe m...
Molecular simulations are a valuable tool for studying biomolecular motions and thermodynamics. Howe...
Protein side-chain motions are involved in many important biological processes including enzymatic c...