AbstractIn recent years, new evidence in biomembrane research brought about a holistic, supramolecular view on membrane-mediated signal transduction. The consequences of sphingomyelinase (SMase)-driven formation of ceramide (Cer) at the membrane interface involves reorganization of the lateral membrane structure of lipids and proteins from the nm to the μm level. In this review, we present recent insights about mechanisms and features of the SMase-mediated formation of Cer-enriched domains in model membranes, which have been elucidated through a combination of microscopic techniques with advanced image processing algorithms. This approach extracts subtle morphological and pattern information beyond the visual perception: since domain patter...
The generation of ceramide in cellular membranes is believed to cause coalescence of small lipid raf...
AbstractWe mimicked the effect of sphingomyelinase activity on lipid mixtures of palmitoyl-oleoyl-ph...
AbstractThe sphingolipid ceramides are known to influence lipid lateral organization in biological m...
AbstractIn recent years, new evidence in biomembrane research brought about a holistic, supramolecul...
AbstractSphingomyelinases (SMases) hydrolyze the membrane constituent sphingomyelin (SM) to phosphoc...
AbstractLipid lateral organization is increasingly found to modulate membrane-bound enzymes. We foll...
AbstractSphingomyelinases (SMases) hydrolyze the membrane constituent sphingomyelin (SM) to phosphoc...
AbstractLipid lateral organization is increasingly found to modulate membrane-bound enzymes. We foll...
AbstractSphingomyelinase (SMase)-induced ceramide (Cer)-enriched domains in a lipid monolayer are sh...
AbstractWe explored the action of sphingomyelinase (SMase) on ternary monolayers containing phosphat...
AbstractThe effects of ceramide incorporation in supported bilayers prepared from ternary lipid mixt...
AbstractTo understand the role of sphingomyelinase (SMase) in the function of biological membranes, ...
AbstractWe have investigated the effect of sphingomyelin (SM) to ceramide enzymatic conversion on li...
AbstractSphingomyelinase (SMase)-induced ceramide (Cer)-enriched domains in a lipid monolayer are sh...
AbstractFree-standing giant unilamellar vesicles were used to visualize the complex lateral heteroge...
The generation of ceramide in cellular membranes is believed to cause coalescence of small lipid raf...
AbstractWe mimicked the effect of sphingomyelinase activity on lipid mixtures of palmitoyl-oleoyl-ph...
AbstractThe sphingolipid ceramides are known to influence lipid lateral organization in biological m...
AbstractIn recent years, new evidence in biomembrane research brought about a holistic, supramolecul...
AbstractSphingomyelinases (SMases) hydrolyze the membrane constituent sphingomyelin (SM) to phosphoc...
AbstractLipid lateral organization is increasingly found to modulate membrane-bound enzymes. We foll...
AbstractSphingomyelinases (SMases) hydrolyze the membrane constituent sphingomyelin (SM) to phosphoc...
AbstractLipid lateral organization is increasingly found to modulate membrane-bound enzymes. We foll...
AbstractSphingomyelinase (SMase)-induced ceramide (Cer)-enriched domains in a lipid monolayer are sh...
AbstractWe explored the action of sphingomyelinase (SMase) on ternary monolayers containing phosphat...
AbstractThe effects of ceramide incorporation in supported bilayers prepared from ternary lipid mixt...
AbstractTo understand the role of sphingomyelinase (SMase) in the function of biological membranes, ...
AbstractWe have investigated the effect of sphingomyelin (SM) to ceramide enzymatic conversion on li...
AbstractSphingomyelinase (SMase)-induced ceramide (Cer)-enriched domains in a lipid monolayer are sh...
AbstractFree-standing giant unilamellar vesicles were used to visualize the complex lateral heteroge...
The generation of ceramide in cellular membranes is believed to cause coalescence of small lipid raf...
AbstractWe mimicked the effect of sphingomyelinase activity on lipid mixtures of palmitoyl-oleoyl-ph...
AbstractThe sphingolipid ceramides are known to influence lipid lateral organization in biological m...