A general framework is presented for the interpretation of NMR relaxation data of proteins. The method, termed isotropic reorientational eigenmode dynamics (iRED), relies on a principal component analysis of the isotropically averaged covariance matrix of the lattice functions of the spin interactions responsible for spin relaxation. The covariance matrix, which is evaluated using a molecular dynamics (MD) simulation, is diagonalized yielding reorientational eigenmodes and amplitudes that reveal detailed information about correlated protein dynamics. The eigenvalue distribution allows one to quantitatively assess whether overall and internal motions are statistically separable. To each eigenmode belongs a correlation time that can be adjust...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
International audienceIntrinsically disordered proteins (IDPs) are flexible biomolecules whose essen...
A general framework is presented for the interpretation of NMR relaxation data of proteins. The meth...
A general framework is presented for the interpretation of NMR relaxation data of proteins. The meth...
A general framework is presented for the interpretation of NMR relaxation data of proteins. The meth...
A general framework is presented for the interpretation of NMR relaxation data of proteins. The meth...
An approach is presented for the interpretation of heteronuclear NMR spin relaxation data in mobile ...
An approach is presented for the interpretation of heteronuclear NMR spin relaxation data in mobile ...
An approach is presented for the interpretation of heteronuclear NMR spin relaxation data in mobile ...
An approach is presented for the interpretation of heteronuclear NMR spin relaxation data in mobile ...
The internal motions of biomolecules were examined by analyzing NMR relaxation in terms of the model...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
International audienceIntrinsically disordered proteins (IDPs) are flexible biomolecules whose essen...
A general framework is presented for the interpretation of NMR relaxation data of proteins. The meth...
A general framework is presented for the interpretation of NMR relaxation data of proteins. The meth...
A general framework is presented for the interpretation of NMR relaxation data of proteins. The meth...
A general framework is presented for the interpretation of NMR relaxation data of proteins. The meth...
An approach is presented for the interpretation of heteronuclear NMR spin relaxation data in mobile ...
An approach is presented for the interpretation of heteronuclear NMR spin relaxation data in mobile ...
An approach is presented for the interpretation of heteronuclear NMR spin relaxation data in mobile ...
An approach is presented for the interpretation of heteronuclear NMR spin relaxation data in mobile ...
The internal motions of biomolecules were examined by analyzing NMR relaxation in terms of the model...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
The dominant dynamics of a partially folded A-state analogue of ubiquitin that give rise to NMR 15N ...
International audienceIntrinsically disordered proteins (IDPs) are flexible biomolecules whose essen...