AbstractCholesterol is a unique molecule in terms of high level of in-built stringency, fine tuned by natural evolution for its ability to optimize physical properties of higher eukaryotic cell membranes in relation to biological functions. We previously demonstrated the requirement of membrane cholesterol in maintaining the ligand binding activity of the hippocampal serotonin1A receptor. In order to test the molecular stringency of the requirement of cholesterol, we depleted cholesterol from native hippocampal membranes followed by replenishment with desmosterol. Desmosterol is an immediate biosynthetic precursor of cholesterol in the Bloch pathway differing only in a double bond at the 24th position in the alkyl side chain. Our results sh...
AbstractA number of recently solved crystal structures of G-protein coupled receptors reveal the pre...
AbstractDipole potential is the potential difference within the membrane bilayer, which originates d...
The serotonin1A (5-HT1A) receptor is an important member of the superfamily of seven transmembrane d...
Cholesterol is a unique molecule in terms of high level of in-built stringency, fine tuned by natura...
AbstractCholesterol is a unique molecule in terms of high level of in-built stringency, fine tuned b...
AbstractThe serotonin1A receptor is an important member of the G-protein coupled receptor family, an...
The serotonin1A receptor is an important member of the G-protein coupled receptor family, and is inv...
AbstractThe serotonin1A receptor is an important member of the G-protein coupled receptor family, an...
The requirement of membrane cholesterol in maintaining ligand binding activity of the hippocampal se...
The requirement of membrane cholesterol in maintaining ligand binding activity of the hippocampal se...
The serotonin1A receptor is an important member of the G-protein coupled receptor family, and is inv...
Membrane lipid composition of cells in the nervous system is unique and displays remarkable diversit...
The serotonin1A receptor is the most extensively studied member of the family of seven transmembrane...
AbstractThe serotonin1A receptor is the most extensively studied member of the family of seven trans...
The serotonin1A receptor is the most extensively studied member of the family of seven transmembrane...
AbstractA number of recently solved crystal structures of G-protein coupled receptors reveal the pre...
AbstractDipole potential is the potential difference within the membrane bilayer, which originates d...
The serotonin1A (5-HT1A) receptor is an important member of the superfamily of seven transmembrane d...
Cholesterol is a unique molecule in terms of high level of in-built stringency, fine tuned by natura...
AbstractCholesterol is a unique molecule in terms of high level of in-built stringency, fine tuned b...
AbstractThe serotonin1A receptor is an important member of the G-protein coupled receptor family, an...
The serotonin1A receptor is an important member of the G-protein coupled receptor family, and is inv...
AbstractThe serotonin1A receptor is an important member of the G-protein coupled receptor family, an...
The requirement of membrane cholesterol in maintaining ligand binding activity of the hippocampal se...
The requirement of membrane cholesterol in maintaining ligand binding activity of the hippocampal se...
The serotonin1A receptor is an important member of the G-protein coupled receptor family, and is inv...
Membrane lipid composition of cells in the nervous system is unique and displays remarkable diversit...
The serotonin1A receptor is the most extensively studied member of the family of seven transmembrane...
AbstractThe serotonin1A receptor is the most extensively studied member of the family of seven trans...
The serotonin1A receptor is the most extensively studied member of the family of seven transmembrane...
AbstractA number of recently solved crystal structures of G-protein coupled receptors reveal the pre...
AbstractDipole potential is the potential difference within the membrane bilayer, which originates d...
The serotonin1A (5-HT1A) receptor is an important member of the superfamily of seven transmembrane d...