A caveolin-3 mutant that causes limb girdle muscular dystrophy type 1C disrupts Src localization and activity and induces apoptosis in skeletal myotubes

被引:51
作者
Smythe, GM
Eby, JC
Disatnik, MH
Rando, TA [1 ]
机构
[1] Stanford Univ, Sch Med, Dept Neurol & Neurol Sci, Stanford, CA 94305 USA
[2] Vet Affairs Palo Alto Hlth Care Syst, Neurol Serv, Palo Alto, CA 94304 USA
[3] Vet Affairs Palo Alto Hlth Care Syst, GRECC, Palo Alto, CA 94304 USA
关键词
caveolin-3; caveolae; limb girdle muscular dystrophy; lipid rafts; signal transduction; Src kinase;
D O I
10.1242/jcs.00806
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Caveolins are membrane proteins that are the major coat proteins of caveolae, specialized lipid rafts in the plasma membrane that serve as scaffolding sites for many signaling complexes. Among the many signaling molecules associated with caveolins are the Src tyrosine kinases, whose activation regulates numerous cellular functions including the balance between cell survival and cell death. Several mutations in the muscle-specific caveolin, caveolin-3, lead to a form of autosomal dominant muscular dystrophy referred to as limb girdle muscular dystrophy type 1C (LGMD-1C). One of these mutations (here termed the 'TFT mutation') results in a deletion of a tripeptide (DeltaTFT(63-65)) that affects the scaffolding and oligomerization domains of caveolin-3. This mutation causes a 90-95% loss of,caveolin-3 protein levels and reduced formation of caveolae in skeletal muscle fibers. However, the effects of this mutation on the specific biochemical processes and cellular functions associated with caveolae have not been elucidated. We demonstrate that the TFT caveolin-3 mutation in post-mitotic skeletal myotubes causes severely reduced localization of caveolin-3 to the plasma membrane and to lipid rafts, and significantly inhibits caveolar function. The TFT mutation reduced the binding of Src to caveolin-3, diminished targeting of Src to lipid rafts, and caused abnormal perinuclear accumulation of Src. Along with these alterations of Src localization and targeting, there was elevated Src activation in myotubes expressing the TFT mutation and an increased incidence of apoptosis in those cells compared with control myotubes. The results of this study demonstrate that caveolin-3 mutations associated with LGMD-1C disrupt normal cellular signal transduction pathways associated with caveolae and cause apoptosis in muscle cells, all of which may reflect pathogenetic pathways that lead to muscle degeneration in these disorders.
引用
收藏
页码:4739 / 4749
页数:11
相关论文
共 50 条
[1]   Structure and function of sphingolipid- and cholesterol-rich membrane rafts [J].
Brown, DA ;
London, E .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (23) :17221-17224
[2]   The tyrosine kinase c-Src is required for 1,25(OH)2-vitamin D3 signalling to the nucleus in muscle cells [J].
Buitrago, C ;
Boland, R ;
de Boland, AR .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2001, 1541 (03) :179-187
[3]   Role of cholesterol in developing T-tubules: Analogous mechanisms for T-tubule and caveolae biogenesis [J].
Carozzi, AJ ;
Ikonen, E ;
Lindsay, MR ;
Parton, RG .
TRAFFIC, 2000, 1 (04) :326-341
[4]   Inhibition of lipid raft-dependent signaling by a dystrophy-associated mutant of caveolin-3 [J].
Carozzi, AJ ;
Roy, S ;
Morrow, IC ;
Pol, A ;
Wyse, B ;
Clyde-Smith, J ;
Prior, IA ;
Nixon, SJ ;
Hancock, JF ;
Parton, RG .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (20) :17944-17949
[5]   Identification of peptide and protein ligands for the caveolin-scaffolding domain - Implications for the interaction of caveolin with caveolae-associated proteins [J].
Couet, J ;
Li, SW ;
Okamoto, T ;
Ikezu, T ;
Lisanti, MP .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (10) :6525-6533
[6]   Integrin-mediated muscle cell spreading - The role of protein kinase C in outside-in and inside-out signaling and evidence of integrin cross-talk [J].
Disatnik, MH ;
Rando, TA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (45) :32486-32492
[7]  
Disatnik MH, 2000, MUSCLE NERVE, V23, P784, DOI 10.1002/(SICI)1097-4598(200005)23:5<784::AID-MUS17>3.0.CO
[8]  
2-Y
[9]  
Disatnik MH, 2002, J CELL SCI, V115, P2151
[10]   Regulation of antioxidant enzyme gene expression in response to oxidative stress and during differentiation of mouse skeletal muscle [J].
Franco, AA ;
Odom, RS ;
Rando, TA .
FREE RADICAL BIOLOGY AND MEDICINE, 1999, 27 (9-10) :1122-1132