Band 3 protein of the human erythrocyte membrane, the anion transport protein, possesses a high affinity steroid binding site. In mixed phospholipid—cholesterol monolayers, the state of occupancy of this site is positively correlated with their cholesterol and sphingomyelin content and negatively with their glycerophospholipid content. We suggest that, in the erythrocyte membrane, the binding site is an inhibitory site of anion transport and that the modulation of its state of occupancy by the membrane lipid is responsible for the negative correlation of anion transport with the membrane's content of cholesterol and sphingomyelin and the positive correlation with the phosphatidylcholine conten
Lipid bilayer experiments were performed in the presence of solubilized band 3 protein from human re...
<div><p>The Band 3 (AE1, SLC4A1) membrane protein is found in red blood cells and in kidney where it...
Cholesterol transport between intracellular compartments proceeds by both energy- and non-energy-dep...
Lipid monolayers at the air‐water interface were used as a model system to study the specificity of ...
Solubilized band 3 protein from human erythrocyte membranes (the anion transport protein) interacts ...
The interaction between cholesterol and band 3-protein from human erythrocyte membranes was studied ...
The paper reviews existing evidence for the participation of the protein in band 3 (nomenclature of ...
Human erythrocyte band 3 was purified essentially free of peripheral proteins, in particular band 4....
AbstractThe anion transport protein of the human erythrocyte membrane, band 3, was incorporated into...
The anion transport protein of the human erythrocyte membrane, band 3, was incorporated into unilame...
AbstractThis study reports the results of an investigation to determine to what extent the influence...
Available from British Library Document Supply Centre- DSC:D93931 / BLDSC - British Library Document...
AbstractSterols, as cholesterol in mammalian cells and ergosterol in fungi, are indispensable molecu...
The binding of a water-soluble steroid, deoxycholic acid, to solubilized band 3 protein from erythro...
In human erythrocytes, okadaic acid, a potent inhibitor of certain protein phosphatases, promotes a ...
Lipid bilayer experiments were performed in the presence of solubilized band 3 protein from human re...
<div><p>The Band 3 (AE1, SLC4A1) membrane protein is found in red blood cells and in kidney where it...
Cholesterol transport between intracellular compartments proceeds by both energy- and non-energy-dep...
Lipid monolayers at the air‐water interface were used as a model system to study the specificity of ...
Solubilized band 3 protein from human erythrocyte membranes (the anion transport protein) interacts ...
The interaction between cholesterol and band 3-protein from human erythrocyte membranes was studied ...
The paper reviews existing evidence for the participation of the protein in band 3 (nomenclature of ...
Human erythrocyte band 3 was purified essentially free of peripheral proteins, in particular band 4....
AbstractThe anion transport protein of the human erythrocyte membrane, band 3, was incorporated into...
The anion transport protein of the human erythrocyte membrane, band 3, was incorporated into unilame...
AbstractThis study reports the results of an investigation to determine to what extent the influence...
Available from British Library Document Supply Centre- DSC:D93931 / BLDSC - British Library Document...
AbstractSterols, as cholesterol in mammalian cells and ergosterol in fungi, are indispensable molecu...
The binding of a water-soluble steroid, deoxycholic acid, to solubilized band 3 protein from erythro...
In human erythrocytes, okadaic acid, a potent inhibitor of certain protein phosphatases, promotes a ...
Lipid bilayer experiments were performed in the presence of solubilized band 3 protein from human re...
<div><p>The Band 3 (AE1, SLC4A1) membrane protein is found in red blood cells and in kidney where it...
Cholesterol transport between intracellular compartments proceeds by both energy- and non-energy-dep...