International audienceProteins perform their functions in solution but their structures are most frequently studied inside crystals. Here we probe how the crystal packing alters microsecond dynamics, using solid-state NMR measurements and multi-microsecond MD simulations of different crystal forms of ubiquitin. In particular, near-rotary-resonance relaxation dispersion (NERRD) experiments probe angular backbone motion, while Bloch–McConnell relaxation dispersion data report on fluctuations of the local electronic environment. These experiments and simulations reveal that the packing of the protein can significantly alter the thermodynamics and kinetics of local conformational exchange. Moreover, we report small-amplitude reor-ientational mo...
We demonstrate that conformational exchange processes in proteins on microsecond-to-millisecond time...
International audienceSolid-state NMR can provide atomic-resolution information about protein motion...
International audienceSolid-state NMR can provide atomic-resolution information about protein motion...
International audienceProteins perform their functions in solution but their structures are most fre...
International audienceProteins perform their functions in solution but their structures are most fre...
International audienceProteins perform their functions in solution but their structures are most fre...
Proteins perform their functions in solution but their structures are most frequently studied inside...
The large majority of three-dimensional structures of biological macromolecules have been determined...
Solid-state NMR spectroscopy can provide site-resolved information about protein dynamics over many ...
International audienceSolid-state NMR spectroscopy can provide site-resolved information about prote...
International audienceSolid-state NMR spectroscopy can provide site-resolved information about prote...
International audienceSolid-state NMR spectroscopy can provide site-resolved information about prote...
To probe internal motions in proteins on the 10−8−10−5 s time scale by NMR relaxation, it is necessa...
Solid-state NMR can provide atomic-resolution information about protein motions occurring on a vast ...
International audienceThe large majority of three-dimensional structures of biological macromolecule...
We demonstrate that conformational exchange processes in proteins on microsecond-to-millisecond time...
International audienceSolid-state NMR can provide atomic-resolution information about protein motion...
International audienceSolid-state NMR can provide atomic-resolution information about protein motion...
International audienceProteins perform their functions in solution but their structures are most fre...
International audienceProteins perform their functions in solution but their structures are most fre...
International audienceProteins perform their functions in solution but their structures are most fre...
Proteins perform their functions in solution but their structures are most frequently studied inside...
The large majority of three-dimensional structures of biological macromolecules have been determined...
Solid-state NMR spectroscopy can provide site-resolved information about protein dynamics over many ...
International audienceSolid-state NMR spectroscopy can provide site-resolved information about prote...
International audienceSolid-state NMR spectroscopy can provide site-resolved information about prote...
International audienceSolid-state NMR spectroscopy can provide site-resolved information about prote...
To probe internal motions in proteins on the 10−8−10−5 s time scale by NMR relaxation, it is necessa...
Solid-state NMR can provide atomic-resolution information about protein motions occurring on a vast ...
International audienceThe large majority of three-dimensional structures of biological macromolecule...
We demonstrate that conformational exchange processes in proteins on microsecond-to-millisecond time...
International audienceSolid-state NMR can provide atomic-resolution information about protein motion...
International audienceSolid-state NMR can provide atomic-resolution information about protein motion...