Sensitivity and resolution together determine the quality of NMR spectra in biological solids. For high-resolution structure determination with solid-state NMR, proton-detection emerged as an attractive strategy in the last few years. Recent progress in probe technology has extended the range of available MAS frequencies up to above 100 kHz, enabling the detection of resolved resonances from sidechain protons, which are important reporters of structure. Here we characterise the interplay between MAS frequency in the newly available range of 70-110 kHz and proton content on the spectral quality obtainable on a 1 GHz spectrometer for methyl resonances. Variable degrees of proton densities are tested on microcrystalline samples of the α-spectr...
When combined with high-frequency (currently 60 kHz) magic-angle spinning (MAS), proton detection bo...
We present a systematic study of the effect of the level of exchangeable protons on the observed ami...
Protein structure determination by proton-detected magic-angle spinning (MAS) NMR has focused on hig...
Sensitivity and resolution together determine the quality of NMR spectra in biological solids. For h...
In the last decade, proton detection in magic-angle spinning (MAS) solid-state NMR became a popular ...
Proton detection in solid state NMR is continuously developing and allows one to gain new insights i...
Proton detection in solid state NMR is continuously developing and allows one to gain new insights i...
In the last decade, proton detection in magic-angle spinning (MAS) solid-state NMR became a popular ...
MAS solid-state NMR is capable of determining structures of protonated solid proteins using proton-d...
In the last years, proton-detected experiments became more and more routine in MAS solid-state NMR. ...
Biological magic angle spinning (MAS) solid-state nuclear magnetic resonance spectroscopy has develo...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
We demonstrate sensitive detection of alpha protons of fully protonated proteins by solid-state NMR ...
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...
When combined with high-frequency (currently 60 kHz) magic-angle spinning (MAS), proton detection bo...
We present a systematic study of the effect of the level of exchangeable protons on the observed ami...
Protein structure determination by proton-detected magic-angle spinning (MAS) NMR has focused on hig...
Sensitivity and resolution together determine the quality of NMR spectra in biological solids. For h...
In the last decade, proton detection in magic-angle spinning (MAS) solid-state NMR became a popular ...
Proton detection in solid state NMR is continuously developing and allows one to gain new insights i...
Proton detection in solid state NMR is continuously developing and allows one to gain new insights i...
In the last decade, proton detection in magic-angle spinning (MAS) solid-state NMR became a popular ...
MAS solid-state NMR is capable of determining structures of protonated solid proteins using proton-d...
In the last years, proton-detected experiments became more and more routine in MAS solid-state NMR. ...
Biological magic angle spinning (MAS) solid-state nuclear magnetic resonance spectroscopy has develo...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
We demonstrate sensitive detection of alpha protons of fully protonated proteins by solid-state NMR ...
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...
When combined with high-frequency (currently 60 kHz) magic-angle spinning (MAS), proton detection bo...
We present a systematic study of the effect of the level of exchangeable protons on the observed ami...
Protein structure determination by proton-detected magic-angle spinning (MAS) NMR has focused on hig...