Oriented sample solid-state NMR is a complementary approach to protein structure determination with the distinct advantage that it can be applied to supramolecular assemblies, such as viruses and membrane proteins, under near-native conditions, which generally include high levels of hydration as found in living systems. Thus, in order to perform 1H detected versions of multi-dimensional experiments water suppression techniques must be integrated into the pulse sequences. For example, 1H-windowed detection of 1H-15N dipolar couplings enable multi-dimensional NMR experiments to be performed. Here we show that the addition of a solvent suppression pulse during the z-filter interval greatly improves the sensitivity of the experiments by suppres...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
We describe new correlation experiments suitable for determining long-range 1H–1H distances in 2H,15...
Solid-state nuclear magnetic resonance (NMR) spectroscopy is a robust method to solve the structures...
Residual heteronuclear dipolar couplings obtained from partially oriented protein samples can provid...
1H detection can significantly improve solid-state NMR spectral sensitivity and thereby allows study...
Solid-state NMR spectroscopy is capable of determining molecular structure in general and protein st...
Two-dimensional (15)N chemical shift/(1)H chemical shift and three-dimensional (1)H-(15)N dipolar co...
In this work, we show how the water flip-back approach that is widely employed in solution-state NMR...
International audienceWater-protein interactions play a major role in protein folding, structure, an...
Recently, proton-detected magic-angle spinning (MAS) solid-state nuclear magnetic resonance (NMR) sp...
Hydration properties of folded and unfolded/disordered miniproteins were monitored in frozen solutio...
Since the first pioneering studies on small deuterated peptides dating more than 20 years ago, 1H de...
Amongst several NMR techniques for Fragment Based Drug Discovery, water LOGSY consists in observing ...
Water molecules are a major determinant of protein stability and are important for understanding pro...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
We describe new correlation experiments suitable for determining long-range 1H–1H distances in 2H,15...
Solid-state nuclear magnetic resonance (NMR) spectroscopy is a robust method to solve the structures...
Residual heteronuclear dipolar couplings obtained from partially oriented protein samples can provid...
1H detection can significantly improve solid-state NMR spectral sensitivity and thereby allows study...
Solid-state NMR spectroscopy is capable of determining molecular structure in general and protein st...
Two-dimensional (15)N chemical shift/(1)H chemical shift and three-dimensional (1)H-(15)N dipolar co...
In this work, we show how the water flip-back approach that is widely employed in solution-state NMR...
International audienceWater-protein interactions play a major role in protein folding, structure, an...
Recently, proton-detected magic-angle spinning (MAS) solid-state nuclear magnetic resonance (NMR) sp...
Hydration properties of folded and unfolded/disordered miniproteins were monitored in frozen solutio...
Since the first pioneering studies on small deuterated peptides dating more than 20 years ago, 1H de...
Amongst several NMR techniques for Fragment Based Drug Discovery, water LOGSY consists in observing ...
Water molecules are a major determinant of protein stability and are important for understanding pro...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
We describe new correlation experiments suitable for determining long-range 1H–1H distances in 2H,15...
Solid-state nuclear magnetic resonance (NMR) spectroscopy is a robust method to solve the structures...