A model for calculating the influence of anisotropic collective motions on NMR relaxation rates in crystalline proteins is presented. We show that small-amplitude (<10 degrees) fluctuations may lead to substantial contributions to the (15)N spin-lattice relaxation rates and propose that the effect of domain motions should be included in solid-state NMR analyses of protein dynamics
It is shown by quasiharmonic analysis that the conformational partition function of a globular prote...
NMR techniques can give insight into a wide variety of motional events that occur in proteins over a...
NMR spin relaxation spectroscopy is a proven method for characterization of the time-scales and ampl...
A model for calculating the influence of anisotropic collective motions on NMR relaxation rates in c...
Significant progress in NMR methodology for measuring spin-relaxation data at many different 15N and...
Solid-state NMR can provide atomic-resolution information about protein motions occurring on a vast ...
International audienceSolid-state NMR can provide atomic-resolution information about protein motion...
A detailed analysis of nitrogen-15 longitudinal relaxation times in microcrystalline proteins is pre...
Solid-state NMR can provide atomic-resolution information about protein motions occurring on a vast ...
Understanding the interplay between protein function and dynamics is currently one of the fundamenta...
International audienceProteins perform their functions in solution but their structures are most fre...
Dynamics are intimately linked to protein stability and play a crucial role in important biological ...
Understanding the interplay between protein function and dynamics is currently one of the fundamenta...
International audienceA detailed analysis of nitrogen-15 longitudinal relaxation times in microcryst...
It is shown by quasiharmonic analysis that the conformational partition function of a globular prote...
It is shown by quasiharmonic analysis that the conformational partition function of a globular prote...
NMR techniques can give insight into a wide variety of motional events that occur in proteins over a...
NMR spin relaxation spectroscopy is a proven method for characterization of the time-scales and ampl...
A model for calculating the influence of anisotropic collective motions on NMR relaxation rates in c...
Significant progress in NMR methodology for measuring spin-relaxation data at many different 15N and...
Solid-state NMR can provide atomic-resolution information about protein motions occurring on a vast ...
International audienceSolid-state NMR can provide atomic-resolution information about protein motion...
A detailed analysis of nitrogen-15 longitudinal relaxation times in microcrystalline proteins is pre...
Solid-state NMR can provide atomic-resolution information about protein motions occurring on a vast ...
Understanding the interplay between protein function and dynamics is currently one of the fundamenta...
International audienceProteins perform their functions in solution but their structures are most fre...
Dynamics are intimately linked to protein stability and play a crucial role in important biological ...
Understanding the interplay between protein function and dynamics is currently one of the fundamenta...
International audienceA detailed analysis of nitrogen-15 longitudinal relaxation times in microcryst...
It is shown by quasiharmonic analysis that the conformational partition function of a globular prote...
It is shown by quasiharmonic analysis that the conformational partition function of a globular prote...
NMR techniques can give insight into a wide variety of motional events that occur in proteins over a...
NMR spin relaxation spectroscopy is a proven method for characterization of the time-scales and ampl...