1H-detection can greatly improve spectral sensitivity in biological solid-state NMR (ssNMR), thus allowing the study of larger and more complex proteins. However, the general requirement to perdeuterate proteins critically curtails the potential of 1H-detection by the loss of aliphatic side-chain protons, which are important probes for protein structure and function. Introduced herein is a labelling scheme for 1H-detected ssNMR, and it gives high quality spectra for both side-chain and backbone protons, and allows quantitative assignments and aids in probing interresidual contacts. Excellent 1H resolution in membrane proteins is obtained, the topology and dynamics of an ion channel were studied. This labelling scheme will open new avenues f...
We demonstrate sensitive detection of alpha protons of fully protonated proteins by solid-state NMR ...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
1H-detection can greatly improve spectral sensitivity in biological solid-state NMR (ssNMR), thus al...
Solid-state NMR (ssNMR) is a technique that allows the study of protein structure and dynamics at at...
Narrow 1H NMR linewidths can be obtained for fully protonated protein samples in the solid state by ...
Biological magic angle spinning (MAS) solid-state nuclear magnetic resonance spectroscopy has develo...
When applied to biomolecules, solid-state NMR suffers from low sensitivity and resolution. The major...
We show that selective labeling of proteins with protonated amino acids embedded in a perdeuterated ...
Biological solid-state nuclear magnetic resonance spectroscopy developed rapidly in the past two dec...
Solid-state NMR spectroscopy (ssNMR) provides increasing possibilities to examine membrane proteins ...
1H detection can significantly improve solid-state NMR spectral sensitivity and thereby allows study...
1H-detection in solid-state NMR of proteins has been traditionally combined with deuteration for bot...
1H-detection in solid-state NMR of proteins has been traditionally combined with deuteration for bot...
1H detection can significantly improve solid-state NMR spectral sensitivity and thereby allows study...
We demonstrate sensitive detection of alpha protons of fully protonated proteins by solid-state NMR ...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
1H-detection can greatly improve spectral sensitivity in biological solid-state NMR (ssNMR), thus al...
Solid-state NMR (ssNMR) is a technique that allows the study of protein structure and dynamics at at...
Narrow 1H NMR linewidths can be obtained for fully protonated protein samples in the solid state by ...
Biological magic angle spinning (MAS) solid-state nuclear magnetic resonance spectroscopy has develo...
When applied to biomolecules, solid-state NMR suffers from low sensitivity and resolution. The major...
We show that selective labeling of proteins with protonated amino acids embedded in a perdeuterated ...
Biological solid-state nuclear magnetic resonance spectroscopy developed rapidly in the past two dec...
Solid-state NMR spectroscopy (ssNMR) provides increasing possibilities to examine membrane proteins ...
1H detection can significantly improve solid-state NMR spectral sensitivity and thereby allows study...
1H-detection in solid-state NMR of proteins has been traditionally combined with deuteration for bot...
1H-detection in solid-state NMR of proteins has been traditionally combined with deuteration for bot...
1H detection can significantly improve solid-state NMR spectral sensitivity and thereby allows study...
We demonstrate sensitive detection of alpha protons of fully protonated proteins by solid-state NMR ...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...