Inhibition of lipid raft-dependent signaling by a dystrophy-associated mutant of caveolin-3
Contribuinte(s) |
H. Tabor |
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Data(s) |
01/01/2002
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Resumo |
Specific point mutations in caveolin-3, a predominantly muscle-specific member of the caveolin family, have been implicated in limb-girdle muscular dystrophy and in rippling muscle disease. We examined the effect of these mutations on caveolin-3 localization and function. Using two independent assay systems, Raf activation in fibroblasts and neurite extension in PC12 cells, we show that one of the caveolin-3 point mutants, caveolin-3-C71W, specifically inhibits signaling by activated H-Ras but not by K-Ras. To gain insights into the effect of the mutant protein on H-Ras signaling, we examined the localization of the mutant proteins in fibroblastic cells and in differentiating myotubes. Unlike the previously characterized caveolin-3-DGV mutant, the inhibitory caveolin-3-C71W mutant reached the plasma membrane and colocalized with wild type caveolins. In BHK cells, caveolin-3-C71W associated with caveolae and in differentiating muscle cells with the developing T-tubule system. In contrast, the caveolin-3-P104L mutant accumulated in the Golgi complex and had no effect on H-Ras-mediated Raf activation. Inhibition by caveolin-3-C71W was rescued by cholesterol addition, suggesting that the mutant protein perturbs cholesterol-rich raft domains. Thus, we have demonstrated that a naturally occurring caveolin-3 mutation can inhibit signaling involving cholesterol-sensitive raft domains. |
Identificador | |
Idioma(s) |
eng |
Publicador |
American Society for Biochemistry & Molecular Biology |
Palavras-Chave | #Biochemistry & Molecular Biology #Girdle Muscular-dystrophy #Developing T-tubules #Plasma-membrane #Skeletal-muscle #H-ras #Glycoprotein Complex #Free-cholesterol #Binding Protein #Golgi-complex #N-ras #C1 #320303 Medical Biochemistry - Lipids #730118 Organs, diseases and abnormal conditions not elsewhere classified |
Tipo |
Journal Article |