Structural characterization of insoluble proteins often relies on solid-state NMR spectroscopy. Perdeuteration and partial back-substitution of exchangeable protons, as proposed for crystalline model proteins, is now shown to lead to beneficial proton spectra for heterogeneous systems, such as fibrils formed by the Alzheimer's disease β-amyloid peptide Aβ40, the lipid reconstituted β-barrel membrane protein OmpG, and the α-helical membrane protein bacteriorhodopsin
When applied to biomolecules, solid-state NMR suffers from low sensitivity and resolution. The major...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
Solid-state NMR (ssNMR) represents a versatile technique in providing atomic-resolution information ...
Structural characterization of insoluble proteins often relies on solid-state NMR spectroscopy. Perd...
Structural characterization of insoluble proteins often relies on solid-state NMR spectroscopy. Perd...
We demonstrate sensitive detection of alpha protons of fully protonated proteins by solid-state NMR ...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
The structures and properties of membrane proteins in lipid bilayers are expected to closely resembl...
GrEASy fibrils: Hydrophobins are fungal proteins that assemble into an amphipathic fibrillar monolay...
In the last years, proton-detected experiments became more and more routine in MAS solid-state NMR. ...
Membrane proteins are an essential part of any living organism. They are cellular switches that trig...
Elucidating the fine structure of amyloid fibrils as well as understanding their processes of nuclea...
Amongst other applications, solid-state nuclear magnetic resonance (NMR) spectroscopy can provide at...
Solid-state Magnetic Resonance has been greatly developed over the past decade. Higher field spectro...
Dynamic Nuclear Polarization solid-state NMR holds the potential to enable a dramatic increase in se...
When applied to biomolecules, solid-state NMR suffers from low sensitivity and resolution. The major...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
Solid-state NMR (ssNMR) represents a versatile technique in providing atomic-resolution information ...
Structural characterization of insoluble proteins often relies on solid-state NMR spectroscopy. Perd...
Structural characterization of insoluble proteins often relies on solid-state NMR spectroscopy. Perd...
We demonstrate sensitive detection of alpha protons of fully protonated proteins by solid-state NMR ...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
The structures and properties of membrane proteins in lipid bilayers are expected to closely resembl...
GrEASy fibrils: Hydrophobins are fungal proteins that assemble into an amphipathic fibrillar monolay...
In the last years, proton-detected experiments became more and more routine in MAS solid-state NMR. ...
Membrane proteins are an essential part of any living organism. They are cellular switches that trig...
Elucidating the fine structure of amyloid fibrils as well as understanding their processes of nuclea...
Amongst other applications, solid-state nuclear magnetic resonance (NMR) spectroscopy can provide at...
Solid-state Magnetic Resonance has been greatly developed over the past decade. Higher field spectro...
Dynamic Nuclear Polarization solid-state NMR holds the potential to enable a dramatic increase in se...
When applied to biomolecules, solid-state NMR suffers from low sensitivity and resolution. The major...
Assignment of proteins in MAS (magic angle spinning) solid-state NMR relies so far on correlations a...
Solid-state NMR (ssNMR) represents a versatile technique in providing atomic-resolution information ...