Publication | Closed Access
NMR Spectroscopic Assignment of Backbone and Side‐Chain Protons in Fully Protonated Proteins: Microcrystals, Sedimented Assemblies, and Amyloid Fibrils
151
Citations
57
References
2016
Year
Protein AssemblyMagnetic ResonanceMolecular BiologyAnalytical UltracentrifugationSide‐chain ProtonsProtein FoldingAmyloid FibrilsBiophysicsProtein ChemistrySolid-state Nmr SpectroscopyBiochemistryBiomolecular AnalysisSolution Nmr SpectroscopyStructural BiologyMagnetic Resonance SpectroscopyNatural SciencesAlpha ProtonsBiomolecular SpectroscopyProtein NmrMedicineNmr Spectroscopic AssignmentNuclear Magnetic Resonance Spectroscopy
We demonstrate sensitive detection of alpha protons of fully protonated proteins by solid-state NMR spectroscopy with 100-111 kHz magic-angle spinning (MAS). The excellent resolution in the Cα-Hα plane is demonstrated for 5 proteins, including microcrystals, a sedimented complex, a capsid and amyloid fibrils. A set of 3D spectra based on a Cα-Hα detection block was developed and applied for the sequence-specific backbone and aliphatic side-chain resonance assignment using only 500 μg of sample. These developments accelerate structural studies of biomolecular assemblies available in submilligram quantities without the need of protein deuteration.
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