Recently, it has been demonstrated that Fourier transform infrared spectroscopy (FTIR) detects conformational changes in the glutamate receptor ligand-binding domain that are associated with agonist binding. Combined with flash photolysis, this observation offers the prospect of following conformational changes at individual protein and agonist moieties in parallel and with high temporal resolution. Here, we demonstrate that small gamma, Greek(small alpha, Greek-carboxy-2-nitrobenzyl) glutamate (caged glutamate) does not interact with the protein, and that following photolysis with UV light the FTIR difference spectrum indicated changes in the protein tertiary and secondary interactions. These changes were similar to those observed for the ...
The stereochemistry of the interactions between quinoxaline antagonists and the ligand-binding domai...
Infrared spectroscopy measures absorptions of vibrating molecules and yields information about molec...
Neurological glutamate receptors bind a variety of artificial ligands, both agonistic and antagonist...
Recently, it has been demonstrated that Fourier transform infrared spectroscopy (FTIR) detects confo...
AbstractRecently, it has been demonstrated that Fourier transform infrared spectroscopy (FTIR) detec...
We have investigated ligand protein interactions for two major signaling proteins, glutamate recepto...
We have investigated ligand protein interactions for two major signaling proteins, glutamate recepto...
ABSTRACT: Biological signal transduction starts with the activation of a receptor protein. Two centr...
Biological signal transduction starts with the activation of a receptor protein. Two central questio...
Fourier transform infrared spectroscopy was used to investigate ligand-protein interactions in the l...
Improvements in sensitivity and data processing of Fourier transform infrared (FTIR) spectroscopy en...
We have developed a Fourier transform infrared (FTIR) difference method for probing conformational c...
AbstractG protein coupled receptors are responsible for a wide variety of signaling responses in div...
Neurological glutamate receptors bind a variety of artificial ligands, both agonistic and antagonist...
The stereochemistry of the interactions between quinoxaline antagonists and the ligand-binding domai...
The stereochemistry of the interactions between quinoxaline antagonists and the ligand-binding domai...
Infrared spectroscopy measures absorptions of vibrating molecules and yields information about molec...
Neurological glutamate receptors bind a variety of artificial ligands, both agonistic and antagonist...
Recently, it has been demonstrated that Fourier transform infrared spectroscopy (FTIR) detects confo...
AbstractRecently, it has been demonstrated that Fourier transform infrared spectroscopy (FTIR) detec...
We have investigated ligand protein interactions for two major signaling proteins, glutamate recepto...
We have investigated ligand protein interactions for two major signaling proteins, glutamate recepto...
ABSTRACT: Biological signal transduction starts with the activation of a receptor protein. Two centr...
Biological signal transduction starts with the activation of a receptor protein. Two central questio...
Fourier transform infrared spectroscopy was used to investigate ligand-protein interactions in the l...
Improvements in sensitivity and data processing of Fourier transform infrared (FTIR) spectroscopy en...
We have developed a Fourier transform infrared (FTIR) difference method for probing conformational c...
AbstractG protein coupled receptors are responsible for a wide variety of signaling responses in div...
Neurological glutamate receptors bind a variety of artificial ligands, both agonistic and antagonist...
The stereochemistry of the interactions between quinoxaline antagonists and the ligand-binding domai...
The stereochemistry of the interactions between quinoxaline antagonists and the ligand-binding domai...
Infrared spectroscopy measures absorptions of vibrating molecules and yields information about molec...
Neurological glutamate receptors bind a variety of artificial ligands, both agonistic and antagonist...