International audienceSolid-state NMR spectroscopy allows the characterization of structure, interactions and dynamics of insoluble and/or very large proteins. Sensitivity and resolution are often major challenges for obtaining atomic-resolution information, in particular for very large protein complexes. Here we show that the use of deuterated, specifically CH3-labelled proteins result in significant sensitivity gains compared to previously employed CHD2 labelling, while line widths only marginally increase. We apply this labelling strategy to a 468 kDa-large dodecameric aminopeptidase, TET2, and the 1.6 MDa-large 50S ribosome subunit of Thermus thermophilus
Recent advances in instrumentation and isotope labeling methodology allow proteins up to 100 kDa in ...
Amongst other applications, solid-state nuclear magnetic resonance (NMR) spectroscopy can provide at...
Traditionally, the major obstacle to using NMR spectroscopy to gain meaningful structural informatio...
International audienceSolid-state NMR spectroscopy allows the characterization of structure, interac...
Proton-detected solid-state NMR was applied to a highly deuterated insoluble, non-crystalline biolog...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
We describe a new labeling method that allows for full protonation at the backbone Hα position, main...
HNCO/HNCACO type correlation experiments are an alternative for assignment of backbone resonances in...
NMR characterization of many proteins is limited by low expression, hurdles for deuteration, and poo...
Amide-proton detected magic-angle spinning NMR of deuterated proteins has become a main technique in...
Interactions within proteins, with their surrounding, and with other molecules are mediated mostly b...
Bigger is better: Sequential backbone assignments are obtained by NMR spectroscopy for a 1 MDa prote...
Well-resolved 2H-13C correlation spectra, reminiscent of 1H-13C correlations, are obtained for perde...
1H-detection in solid-state NMR of proteins has been traditionally combined with deuteration for bot...
Protein structure determination by proton-detected magic-angle spinning (MAS) NMR has focused on hig...
Recent advances in instrumentation and isotope labeling methodology allow proteins up to 100 kDa in ...
Amongst other applications, solid-state nuclear magnetic resonance (NMR) spectroscopy can provide at...
Traditionally, the major obstacle to using NMR spectroscopy to gain meaningful structural informatio...
International audienceSolid-state NMR spectroscopy allows the characterization of structure, interac...
Proton-detected solid-state NMR was applied to a highly deuterated insoluble, non-crystalline biolog...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
We describe a new labeling method that allows for full protonation at the backbone Hα position, main...
HNCO/HNCACO type correlation experiments are an alternative for assignment of backbone resonances in...
NMR characterization of many proteins is limited by low expression, hurdles for deuteration, and poo...
Amide-proton detected magic-angle spinning NMR of deuterated proteins has become a main technique in...
Interactions within proteins, with their surrounding, and with other molecules are mediated mostly b...
Bigger is better: Sequential backbone assignments are obtained by NMR spectroscopy for a 1 MDa prote...
Well-resolved 2H-13C correlation spectra, reminiscent of 1H-13C correlations, are obtained for perde...
1H-detection in solid-state NMR of proteins has been traditionally combined with deuteration for bot...
Protein structure determination by proton-detected magic-angle spinning (MAS) NMR has focused on hig...
Recent advances in instrumentation and isotope labeling methodology allow proteins up to 100 kDa in ...
Amongst other applications, solid-state nuclear magnetic resonance (NMR) spectroscopy can provide at...
Traditionally, the major obstacle to using NMR spectroscopy to gain meaningful structural informatio...