A method is proposed for direct mapping of spectral density functions of the rotational motions of H-X bond vectors, such as 1H---15N, by measuring a set of NMR relaxation parameters. The well known and frequently measured relaxation parameters T1 and T2 probe the spectral density function J([omega]) at five frequencies: 0, [omega]N, [omega]H, [omega]H - [omega]N, and [omega]H + [omega]N. In this study, the longitudinal relaxation time T1(Nz), the transverse relaxation times of in-phase coherence, T2(Nx,y), and of antiphase coherence, T2(2HzNx,y), the relaxation time of longitudinal two-spin order, T1(2HzNz), and the heteronuclear cross-relaxation rate [sigma]HN are measured for the heteronucleus N. These five relaxation parameters sample t...
NMR spectroscopy is a powerful tool for research on protein dynamics. In the past decade, there has ...
13CC(-13C0 homonuclear NOE and 13CO T ~ relaxation were measured for a 20 kDa protein using triple-r...
The transverse relaxation rates R (2) = 1/T (2) of protons can be determined by spin-echo sequences ...
A method is proposed for direct mapping of spectral density functions of the rotational motions of H...
Theoretical and experimental aspects of T1p are discussed for a heteronuclear HX two-spin system (T1...
The research described herein centers on heteronuclear two-dimensional (2D) nuclear magnetic resonan...
Standard spectral density mapping protocols, well suited for the analysis of N-15 relaxation rates, ...
The authors develop a new general spectral density for use in interpreting nuclear spin-lattice rela...
Multidimensional, heteronuclear NMR relaxation methods are used extensively to characterize the dyna...
Heteronuclear T2 relaxation measurements ( 13C, “N) play an integral role in the characterization of...
This thesis examines the problems of making 13C NMR relaxation measurements in proteins uniformly en...
13 C α - 13 CO homonuclear NOE and 13 CO T 1 relaxation were measured for a 20 kDa protein using tri...
International audienceThis study deals with the exploitation of the three classical 15N relaxation p...
The internal motions of biomolecules were examined by analyzing NMR relaxation in terms of the model...
<p><b>A, B, C. </b><sup>15</sup>N spin-relaxation rates for <sup>15</sup>N-perdeuterated hHP1β measu...
NMR spectroscopy is a powerful tool for research on protein dynamics. In the past decade, there has ...
13CC(-13C0 homonuclear NOE and 13CO T ~ relaxation were measured for a 20 kDa protein using triple-r...
The transverse relaxation rates R (2) = 1/T (2) of protons can be determined by spin-echo sequences ...
A method is proposed for direct mapping of spectral density functions of the rotational motions of H...
Theoretical and experimental aspects of T1p are discussed for a heteronuclear HX two-spin system (T1...
The research described herein centers on heteronuclear two-dimensional (2D) nuclear magnetic resonan...
Standard spectral density mapping protocols, well suited for the analysis of N-15 relaxation rates, ...
The authors develop a new general spectral density for use in interpreting nuclear spin-lattice rela...
Multidimensional, heteronuclear NMR relaxation methods are used extensively to characterize the dyna...
Heteronuclear T2 relaxation measurements ( 13C, “N) play an integral role in the characterization of...
This thesis examines the problems of making 13C NMR relaxation measurements in proteins uniformly en...
13 C α - 13 CO homonuclear NOE and 13 CO T 1 relaxation were measured for a 20 kDa protein using tri...
International audienceThis study deals with the exploitation of the three classical 15N relaxation p...
The internal motions of biomolecules were examined by analyzing NMR relaxation in terms of the model...
<p><b>A, B, C. </b><sup>15</sup>N spin-relaxation rates for <sup>15</sup>N-perdeuterated hHP1β measu...
NMR spectroscopy is a powerful tool for research on protein dynamics. In the past decade, there has ...
13CC(-13C0 homonuclear NOE and 13CO T ~ relaxation were measured for a 20 kDa protein using triple-r...
The transverse relaxation rates R (2) = 1/T (2) of protons can be determined by spin-echo sequences ...