A CAV3 microdeletion differentially affects skeletal muscle and myocardium
- 9 December 2003
- journal article
- Published by Wolters Kluwer Health in Neurology
- Vol. 61 (11) , 1513-1519
- https://doi.org/10.1212/01.wnl.0000097320.35982.03
Abstract
Background: Caveolin-3 is the muscle-specific protein product of the caveolin gene family and an integral membrane component of caveolae. Mutations in the gene encoding caveolin-3 (CAV3) underlie four distinct disorders of skeletal muscle: the autosomal dominant form of limb–girdle muscular dystrophy type 1C (LGMD-1C), rippling muscle disease (RMD), sporadic and familial forms of hyperCKemia, and distal myopathy. Objective: To characterize a multigenerational Italian family affected by an autosomal dominant myopathic disorder and to assess the expression of caveolin-3, dystrophin, dystrophin-associated glycoproteins, and neuronal nitric oxide synthase in the myocardium of an affected patient. Methods: Clinical analysis involved 15 family members. Skeletal muscle expression of sarcolemmal proteins was evaluated by immunohistochemistry and western blot analysis in three affected individuals. Caveolar structures were analyzed through electron microscopy in muscle biopsies and in one heart biopsy. Results: CAV3 genetic analysis showed a heterozygous 3-bp microdeletion (328–330del) in affected individuals, resulting in the loss of a phenylalanine (Phe97del) in the transmembrane domain. In the skeletal muscle, the mutation was associated with severe caveolin-3 deficiency and caveolar disorganization, whereas the expression of the other analyzed muscle proteins was unaltered. Remarkably, caveolin-3 was expressed in myocardium at a level corresponding to about 60% of that of control individuals and was correctly localized at the myocardial cell membranes, with preservation of cardiac myofiber caveolar structures. Clinical analysis revealed the concomitant presence in this family of the following phenotypes: RMD, LGMD, and hyperCKemia. Conclusions: Intrafamilial phenotypic heterogeneity is associated with caveolin-3 Phe97 microdeletion. The molecular network interacting with caveolin-3 in skeletal muscle and heart may differ.Keywords
This publication has 29 references indexed in Scilit:
- Consequences of a novel caveolin‐3 mutation in a large German familyAnnals of Neurology, 2003
- Loss of sarcolemma nNOS in sarcoglycan‐deficient muscleThe FASEB Journal, 2002
- Caveolin-3 Knock-out Mice Develop a Progressive Cardiomyopathy and Show Hyperactivation of the p42/44 MAPK CascadeJournal of Biological Chemistry, 2002
- Familial isolated hyperCKaemia associated with a new mutation in the caveolin-3 (CAV-3) geneJournal of Neurology, Neurosurgery & Psychiatry, 2002
- Caveolin-3 Directly Interacts with the C-terminal Tail of β-DystroglycanPublished by Elsevier ,2000
- Increased Number of Caveolae and Caveolin-3 Overexpression in Duchenne Muscular DystrophyBiochemical and Biophysical Research Communications, 1999
- Chromosomal localization, genomic organization, and developmental expression of the murine caveolin gene family (Cav‐1, ‐2, and ‐3)FEBS Letters, 1998
- THE CAVEOLAE MEMBRANE SYSTEMAnnual Review of Biochemistry, 1998
- Expression of Caveolin-3 in Skeletal, Cardiac, and Smooth Muscle CellsJournal of Biological Chemistry, 1996
- Molecular Cloning of Caveolin-3, a Novel Member of the Caveolin Gene Family Expressed Predominantly in MuscleJournal of Biological Chemistry, 1996