For small helical membrane proteins, their structures are highly sensitive to their environment, and solid state NMR is a structural technique that can characterize these membrane proteins in native-like lipid bilayers and proteoliposomes. To date, a systematic method by which to evaluate the effect of the solubilizing detergent on proteoliposome preparations for solid state NMR of membrane proteins has not been presented in the literature. A set of experiments are presented aimed at determining the conditions most amenable to dialysis mediated reconstitution sample preparation. A membrane protein from <i>M. tuberculosis</i> is used to illustrate the method. The results show that a detergent that stabilizes the most protein is not always id...
Most biological functions are carried out in supramolecular assemblies. As a result of their slow re...
Nuclear Magnetic Resonance spectroscopy is a powerful tool for studying the structure and dynamics o...
Lipid bilayer nanodiscs are an attractive tool to study membrane proteins in a detergent-free lipid-...
For small helical membrane proteins, their structures are highly sensitive to their environment, and...
Solid-state NMR spectroscopy has been used successfully for characterizing the structure and dynamic...
Membrane proteins are important players in signal transduction and the exchange of metabolites withi...
The fact that membrane proteins are notoriously difficult to analyse using standard protocols for at...
Advances in solution nuclear magnetic resonance (NMR) methodology that enable studies of very large ...
Solid-state NMR spectroscopy (ssNMR) provides increasing possibilities to examine membrane proteins ...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
AbstractAs an alternative to X-ray crystallography, nuclear magnetic resonance (NMR) spectroscopy in...
Membranes of cells are active barriers, in which membrane proteins perform essential remodelling, tr...
The native environment for a membrane protein is a phospholipid bilayer. Because the protein is immo...
Solid-state NMR is a promising tool for elucidating membrane-related biological phenomena. We achiev...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
Most biological functions are carried out in supramolecular assemblies. As a result of their slow re...
Nuclear Magnetic Resonance spectroscopy is a powerful tool for studying the structure and dynamics o...
Lipid bilayer nanodiscs are an attractive tool to study membrane proteins in a detergent-free lipid-...
For small helical membrane proteins, their structures are highly sensitive to their environment, and...
Solid-state NMR spectroscopy has been used successfully for characterizing the structure and dynamic...
Membrane proteins are important players in signal transduction and the exchange of metabolites withi...
The fact that membrane proteins are notoriously difficult to analyse using standard protocols for at...
Advances in solution nuclear magnetic resonance (NMR) methodology that enable studies of very large ...
Solid-state NMR spectroscopy (ssNMR) provides increasing possibilities to examine membrane proteins ...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
AbstractAs an alternative to X-ray crystallography, nuclear magnetic resonance (NMR) spectroscopy in...
Membranes of cells are active barriers, in which membrane proteins perform essential remodelling, tr...
The native environment for a membrane protein is a phospholipid bilayer. Because the protein is immo...
Solid-state NMR is a promising tool for elucidating membrane-related biological phenomena. We achiev...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
Most biological functions are carried out in supramolecular assemblies. As a result of their slow re...
Nuclear Magnetic Resonance spectroscopy is a powerful tool for studying the structure and dynamics o...
Lipid bilayer nanodiscs are an attractive tool to study membrane proteins in a detergent-free lipid-...