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1.
Nat Genet ; 21(3): 285-8, 1999 Mar.
Article in English | MEDLINE | ID: mdl-10080180

ABSTRACT

Emery-Dreifuss muscular dystrophy (EDMD) is characterized by early contractures of elbows and Achilles tendons, slowly progressive muscle wasting and weakness, and a cardiomyopathy with conduction blocks which is life-threatening. Two modes of inheritance exist, X-linked (OMIM 310300) and autosomal dominant (EDMD-AD; OMIM 181350). EDMD-AD is clinically identical to the X-linked forms of the disease. Mutations in EMD, the gene encoding emerin, are responsible for the X-linked form. We have mapped the locus for EDMD-AD to an 8-cM interval on chromosome 1q11-q23 in a large French pedigree, and found that the EMD phenotype in four other small families was potentially linked to this locus. This region contains the lamin A/C gene (LMNA), a candidate gene encoding two proteins of the nuclear lamina, lamins A and C, produced by alternative splicing. We identified four mutations in LMNA that co-segregate with the disease phenotype in the five families: one nonsense mutation and three missense mutations. These results are the first identification of mutations in a component of the nuclear lamina as a cause of inherited muscle disorder. Together with mutations in EMD (refs 5,6), they underscore the potential importance of the nuclear envelope components in the pathogenesis of neuromuscular disorders.


Subject(s)
Muscular Dystrophies/genetics , Mutation , Nuclear Proteins/genetics , Amino Acid Sequence , Cloning, Molecular , Deoxyribonuclease HpaII/genetics , Deoxyribonucleases, Type II Site-Specific/genetics , Exons , Female , Genes, Dominant , Haplotypes , Humans , Immunohistochemistry , Lamin Type A , Lamins , Male , Microsatellite Repeats , Molecular Sequence Data , Muscular Dystrophy, Emery-Dreifuss , Myocardium/metabolism , Myocardium/pathology , Nuclear Proteins/analysis , Nuclear Proteins/metabolism , Pedigree , Sequence Analysis, DNA , Sequence Homology, Amino Acid
2.
Hum Mol Genet ; 6(13): 2257-64, 1997 Dec.
Article in English | MEDLINE | ID: mdl-9361031

ABSTRACT

Emery-Dreifuss muscular dystrophy (EDMD) is an X-linked inherited disease characterized by early contracture of the elbows, Achilles tendons and post-cervical muscles, slow progressive muscle wasting and weakness and cardiomyopathy presenting with arrhythmia and atrial paralysis: heart block can eventually lead to sudden death. The EDMD geneencodes a novel ubiquitous protein, emerin, which decorates the nuclear rim of many cell types. Amino acid sequence homology and cellular localization suggested that emerin is a member of the nuclear lamina-associated protein family. These findings did not explain the role of emerin nor account for the skeletal muscle- and heart-specific clinical manifestations associated with the disorder. Now we report that emerin localizes to the inner nuclear membrane, via its hydrophobic C-terminal domain, but that in heart and cultured cardiomyocytes it is also associated with the intercalated discs. We propose a general role for emerin in membrane anchorage to the cytoskeleton. In the nuclear envelope emerin plays a ubiquitous and dispensable role in association of the nuclear membrane with the lamina. In heart its specific localization to desmosomes and fasciae adherentes could account for the characteristic conduction defects described in patients.


Subject(s)
Desmosomes/chemistry , Membrane Proteins/analysis , Muscle Proteins/analysis , Muscular Dystrophies/genetics , Myocardium/chemistry , Nuclear Envelope/chemistry , Thymopoietins/analysis , Arrhythmias, Cardiac/etiology , Cell Adhesion , Cytoskeletal Proteins/analysis , Cytoskeleton/metabolism , Heart Conduction System/physiopathology , Humans , Membrane Proteins/genetics , Membrane Proteins/physiology , Microscopy, Immunoelectron , Muscle Proteins/genetics , Muscle Proteins/physiology , Muscular Dystrophies/complications , Muscular Dystrophies/metabolism , Muscular Dystrophies/physiopathology , Muscular Dystrophy, Emery-Dreifuss , Myocardium/ultrastructure , Nuclear Proteins , Phosphorylation , Protein Processing, Post-Translational , Thymopoietins/genetics , Thymopoietins/physiology , X Chromosome
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