As a method for the structure determination of integral membrane proteins or other large macromolecular complexes, a solid state 2H NMR approach is presented, capable of measuring the orientations of individual chemical bond vectors. In an immobilized uniaxially oriented sample, the bond angle of a deuterium-labeled methyl group relative to the axis of ordering can be calculated from the quadrupole splitting in the "zero-tilt" spectrum where the sample normal is aligned parallel to the spectrometer field direction. However, since positive and negative values of this splitting cannot be distinguished, there may appear to be two solutions, of which only one describes the correct molecular geometry. We show that it is possible to determine the...
AbstractStructural models of membrane proteins can be refined with sets of multiple orientation cons...
We report for the first time, oriented-sample solid-state NMR experiments, specifically polarization...
We report for the first time, oriented-sample solid-state NMR experiments, specifically polarization...
As a method for the structure determination of integral membrane proteins or other large macromolecu...
Structural details about the geometry of the retinal chromophore in the binding pocket of bacteriorh...
ABSTRACT: The orientation of prosthetic groups in membrane proteins is of considerable importance in...
ABSTRACT: The orientations of three methyl bonds of the retinylidene chromophore of bacteriorhodopsi...
We present the first application of MAOSS (magic angle oriented sample spinning) NMR spectroscopy to...
We present the first application of MAOSS (magic angle oriented sample spinning) NMR spectroscopy to...
proteins. This technique may prove particularly useful when studying large proteins that are difficu...
Rhodopsin is the retinal photoreceptor responsible for visual signal transduction. To determine the ...
ABSTRACT: The conformation of retinal bound to the G protein-coupled receptor rhodopsin is intimatel...
AbstractSolid-state 2H NMR spectroscopy gives a powerful avenue to investigating the structures of l...
AbstractRhodopsin is the retinal photoreceptor responsible for visual signal transduction. To determ...
AbstractRhodopsin is the retinal photoreceptor responsible for visual signal transduction. To determ...
AbstractStructural models of membrane proteins can be refined with sets of multiple orientation cons...
We report for the first time, oriented-sample solid-state NMR experiments, specifically polarization...
We report for the first time, oriented-sample solid-state NMR experiments, specifically polarization...
As a method for the structure determination of integral membrane proteins or other large macromolecu...
Structural details about the geometry of the retinal chromophore in the binding pocket of bacteriorh...
ABSTRACT: The orientation of prosthetic groups in membrane proteins is of considerable importance in...
ABSTRACT: The orientations of three methyl bonds of the retinylidene chromophore of bacteriorhodopsi...
We present the first application of MAOSS (magic angle oriented sample spinning) NMR spectroscopy to...
We present the first application of MAOSS (magic angle oriented sample spinning) NMR spectroscopy to...
proteins. This technique may prove particularly useful when studying large proteins that are difficu...
Rhodopsin is the retinal photoreceptor responsible for visual signal transduction. To determine the ...
ABSTRACT: The conformation of retinal bound to the G protein-coupled receptor rhodopsin is intimatel...
AbstractSolid-state 2H NMR spectroscopy gives a powerful avenue to investigating the structures of l...
AbstractRhodopsin is the retinal photoreceptor responsible for visual signal transduction. To determ...
AbstractRhodopsin is the retinal photoreceptor responsible for visual signal transduction. To determ...
AbstractStructural models of membrane proteins can be refined with sets of multiple orientation cons...
We report for the first time, oriented-sample solid-state NMR experiments, specifically polarization...
We report for the first time, oriented-sample solid-state NMR experiments, specifically polarization...