Several lines of evidence suggest that lipid rafts are involved in cellular fatty acid uptake and influence fatty acid translocase (FAT/CD36) function. However, it remains unknown whether caveolae, a specialized raft type, are required for this mechanism. Here, we show that wild-type (WT) mouse embryonic fibroblasts (MEFs) and caveolin-1 knockout (KO) MEFs, which are devoid of caveolae, have comparable overall expression of FAT/CD36 protein but altered subcellular FAT/CD36 localization and function. In WT MEFs, FAT/CD36 was isolated with both lipid raft enriched detergent-resistant membranes (DRMs) and detergent-soluble membranes (DSMs), whereas in cav-1 KO cells it was exclusively associated with DSMs. Subcellular fractionation demonstrate...
Caveolin-1 cooperates with the recently described cavin protein family to form membrane caveolae str...
Caveolins, structural protein coats of caveolae primarily involved in membrane-related functions, ha...
Caveolae are specialized membrane microdomains formed as the result of local accumulation of cholest...
AbstractSeveral lines of evidence suggest that lipid rafts are involved in cellular fatty acid uptak...
AbstractSeveral lines of evidence suggest that lipid rafts are involved in cellular fatty acid uptak...
Several lines of evidence suggest that lipid rafts are involved in cellular fatty acid uptake and in...
Several lines of evidence suggest that lipid rafts are involved in cellular fatty acid uptake and in...
Lipid rafts defined as cholesterol- and sphingomyelin-rich domains have been isolated from different...
Caveolins are primarily known as the main constituents of the protein coat of caveolae invaginations...
Mice and humans lacking functional caveolae are dyslipidemic and have reduced fat stores and smaller...
This study investigates the role of lipid rafts and caveolae, a subclass of lipid raft microdomains,...
Copyright © 2008 Elsevier B.V. All rights reserved. ScienceDirect® is a registered trademark of Else...
Caveolin-1 (Cav1), a structural protein required for the formation of invaginated membrane domains k...
Lipid rafts are liquid ordered platforms that dynamically compartmentalize membranes. Caveolins and ...
OBJECTIVE: Defective caveolin-1 expression is now recognized as a cause of lipoatrophic diabetes in ...
Caveolin-1 cooperates with the recently described cavin protein family to form membrane caveolae str...
Caveolins, structural protein coats of caveolae primarily involved in membrane-related functions, ha...
Caveolae are specialized membrane microdomains formed as the result of local accumulation of cholest...
AbstractSeveral lines of evidence suggest that lipid rafts are involved in cellular fatty acid uptak...
AbstractSeveral lines of evidence suggest that lipid rafts are involved in cellular fatty acid uptak...
Several lines of evidence suggest that lipid rafts are involved in cellular fatty acid uptake and in...
Several lines of evidence suggest that lipid rafts are involved in cellular fatty acid uptake and in...
Lipid rafts defined as cholesterol- and sphingomyelin-rich domains have been isolated from different...
Caveolins are primarily known as the main constituents of the protein coat of caveolae invaginations...
Mice and humans lacking functional caveolae are dyslipidemic and have reduced fat stores and smaller...
This study investigates the role of lipid rafts and caveolae, a subclass of lipid raft microdomains,...
Copyright © 2008 Elsevier B.V. All rights reserved. ScienceDirect® is a registered trademark of Else...
Caveolin-1 (Cav1), a structural protein required for the formation of invaginated membrane domains k...
Lipid rafts are liquid ordered platforms that dynamically compartmentalize membranes. Caveolins and ...
OBJECTIVE: Defective caveolin-1 expression is now recognized as a cause of lipoatrophic diabetes in ...
Caveolin-1 cooperates with the recently described cavin protein family to form membrane caveolae str...
Caveolins, structural protein coats of caveolae primarily involved in membrane-related functions, ha...
Caveolae are specialized membrane microdomains formed as the result of local accumulation of cholest...