The binding of amphiphilic molecules to lipid bilayers is followed by ^(19)F NMR using chemical shift and line shape differences between the solution and membrane-tethered states of −CF_3 and −CHF_2 groups. A chemical shift separation of 1.6 ppm combined with a high natural abundance and high sensitivity of ^(19)F nuclei offers an advantage of using ^(19)F NMR spectroscopy as an efficient tool for rapid time-resolved screening of pharmaceuticals for membrane binding. We illustrate the approach with molecules containing both fluorinated tails and an acrylate moiety, resolving the signals of molecules in solution from those bound to synthetic imyristoylphosphatidylcholine bilayers both with and without magic angle sample spinning. The potenti...
Sparse lipid fluorination enhances the lipids’ 1H signal dispersion, enables clean molecular distinc...
With the spectacular advancement of NMR techniques and the flourishing of fluorine chemistry allowin...
Using solid-state NMR approaches, it is now possible to define the structure and dynamics of binding...
The binding of amphiphilic molecules to lipid bilayers is followed by ^(19)F NMR using chemical shif...
The possibility of measuring the action of inhibitors of specific enzymatic reactions in intact cell...
Fluorine is often incorporated into the aromatic moieties of synthetic bioactive molecules such as p...
The fluorine nucleus, when introduced as a reporter group in membrane-associated proteins or peptide...
The fluorine nucleus, when introduced as a reporter group in membrane-associated proteins or peptide...
Membrane proteins pose problems for the application of NMR-based ligand-screening methods because of...
The possibility of measuring the action of inhibitors of specific enzymatic reactions in intact cell...
Here we explore a variety of monofluorinated and trifluoromethyl reporters in an effort to derive op...
Sparse lipid fluorination enhances the lipids' 1H signal dispersion, enables clean molecular distinc...
International audienceWith the spectacular advancement of NMR techniques and the flourishing of fluo...
Fluorine-19 nuclear magnetic resonance at 235 MHz has been used to characterize the NMR properties o...
Fluorine NMR spectroscopy is widely used for detection of protein-ligand interactions in drug discov...
Sparse lipid fluorination enhances the lipids’ 1H signal dispersion, enables clean molecular distinc...
With the spectacular advancement of NMR techniques and the flourishing of fluorine chemistry allowin...
Using solid-state NMR approaches, it is now possible to define the structure and dynamics of binding...
The binding of amphiphilic molecules to lipid bilayers is followed by ^(19)F NMR using chemical shif...
The possibility of measuring the action of inhibitors of specific enzymatic reactions in intact cell...
Fluorine is often incorporated into the aromatic moieties of synthetic bioactive molecules such as p...
The fluorine nucleus, when introduced as a reporter group in membrane-associated proteins or peptide...
The fluorine nucleus, when introduced as a reporter group in membrane-associated proteins or peptide...
Membrane proteins pose problems for the application of NMR-based ligand-screening methods because of...
The possibility of measuring the action of inhibitors of specific enzymatic reactions in intact cell...
Here we explore a variety of monofluorinated and trifluoromethyl reporters in an effort to derive op...
Sparse lipid fluorination enhances the lipids' 1H signal dispersion, enables clean molecular distinc...
International audienceWith the spectacular advancement of NMR techniques and the flourishing of fluo...
Fluorine-19 nuclear magnetic resonance at 235 MHz has been used to characterize the NMR properties o...
Fluorine NMR spectroscopy is widely used for detection of protein-ligand interactions in drug discov...
Sparse lipid fluorination enhances the lipids’ 1H signal dispersion, enables clean molecular distinc...
With the spectacular advancement of NMR techniques and the flourishing of fluorine chemistry allowin...
Using solid-state NMR approaches, it is now possible to define the structure and dynamics of binding...