AbstractVesicles that do not contain spectrin were released from human erythrocytes by incubation with dimyristoylphosphatidylcholine. The transbilayer orientation of membrane phospholipids was subsequently determined by two independent methods. Incubation with phospholipase A2 revealed that the phospholipid asymmetry observed in red blood cells was essentially preserved in vesicles. By use of the prothrombinase assay a still highly asymmetric distribution of phosphatidylserine could be demonstrated in spite of its slightly increased exposure on the vesicle surface. These results show that membrane phospholipid asymmetry can be maintained in a system that does not contain an intact membrane skeleton or spectrin
1. 1. Rat-blood phospholipids were labeled in vivo with [32P]phosphate. The erythrocytes were treate...
The effects of temperature and of the action of a purified phospholipase C enzyme preparation on hum...
1. 1. Fresh human erythrocytes were treated with lytic and non-lytic combinations of phospholipases ...
AbstractVesicles that do not contain spectrin were released from human erythrocytes by incubation wi...
AbstractErythrocytes and spectrin-free DMPC-induced vesicles released from the cells were incubated ...
The phospholipid organization in unilamellar vesicles comprised of various purified phospholipid com...
Various structural components of biological membranes are asymmetrically localized in the two surfac...
Erythrocyte membrane phospholipids are asymmetrically distributed in two surfaces of the membrane bi...
The phospholipid organization in unilamellar vesicles comprised of various purified phospholipid com...
AbstractTrace amounts of radiolabeled phospholipids were inserted into the outer membrane leaflet of...
Earlier studies have suggested that the membrane-associated cytoskeleton (membrane skeleton) in eryt...
AbstractTwo models for the mechanism of maintenance of lipid asymmetry in erythrocytes are considere...
AbstractCytoskeleton-free vesicles released from human red blood cells (RBC) transport exogenously s...
The distribution of phospholipids over the outer and inner layers of the plasma membranes of differe...
Transbilayer phospholipid distribution, membrane skeleton dissociation/association, and spectrin str...
1. 1. Rat-blood phospholipids were labeled in vivo with [32P]phosphate. The erythrocytes were treate...
The effects of temperature and of the action of a purified phospholipase C enzyme preparation on hum...
1. 1. Fresh human erythrocytes were treated with lytic and non-lytic combinations of phospholipases ...
AbstractVesicles that do not contain spectrin were released from human erythrocytes by incubation wi...
AbstractErythrocytes and spectrin-free DMPC-induced vesicles released from the cells were incubated ...
The phospholipid organization in unilamellar vesicles comprised of various purified phospholipid com...
Various structural components of biological membranes are asymmetrically localized in the two surfac...
Erythrocyte membrane phospholipids are asymmetrically distributed in two surfaces of the membrane bi...
The phospholipid organization in unilamellar vesicles comprised of various purified phospholipid com...
AbstractTrace amounts of radiolabeled phospholipids were inserted into the outer membrane leaflet of...
Earlier studies have suggested that the membrane-associated cytoskeleton (membrane skeleton) in eryt...
AbstractTwo models for the mechanism of maintenance of lipid asymmetry in erythrocytes are considere...
AbstractCytoskeleton-free vesicles released from human red blood cells (RBC) transport exogenously s...
The distribution of phospholipids over the outer and inner layers of the plasma membranes of differe...
Transbilayer phospholipid distribution, membrane skeleton dissociation/association, and spectrin str...
1. 1. Rat-blood phospholipids were labeled in vivo with [32P]phosphate. The erythrocytes were treate...
The effects of temperature and of the action of a purified phospholipase C enzyme preparation on hum...
1. 1. Fresh human erythrocytes were treated with lytic and non-lytic combinations of phospholipases ...