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The zebrafish candyfloss mutant implicates extracellular matrix adhesion failure in laminin α2-deficient congenital muscular dystrophy
- Source :
- Proceedings of the National Academy of Sciences. 104:7092-7097
- Publication Year :
- 2007
- Publisher :
- Proceedings of the National Academy of Sciences, 2007.
-
Abstract
- Mutations in the human laminin α 2 ( LAMA2 ) gene result in the most common form of congenital muscular dystrophy (MDC1A). There are currently three models for the molecular basis of cellular pathology in MDC1A: ( i ) lack of LAMA2 leads to sarcolemmal weakness and failure, followed by cellular necrosis, as is the case in Duchenne muscular dystrophy (DMD); ( ii ) loss of LAMA2-mediated signaling during the development and maintenance of muscle tissue results in myoblast proliferation and fusion defects; ( iii ) loss of LAMA2 from the basement membrane of the Schwann cells surrounding the peripheral nerves results in a lack of motor stimulation, leading to effective denervation atrophy. Here we show that the degenerative muscle phenotype in the zebrafish dystrophic mutant, candyfloss ( caf ) results from mutations in the laminin α 2 ( lama2 ) gene. In vivo time-lapse analysis of mechanically loaded fibers and membrane permeability assays suggest that, unlike DMD, fiber detachment is not initially associated with sarcolemmal rupture. Early muscle formation and myoblast fusion are normal, indicating that any deficiency in early Lama2 signaling does not lead to muscle pathology. In addition, innervation by the primary motor neurons is unaffected, and fiber detachment stems from muscle contraction, demonstrating that muscle atrophy through lack of motor neuron activity does not contribute to pathology in this system. Using these and other analyses, we present a model of lama2 function where fiber detachment external to the sarcolemma is mechanically induced, and retracted fibers with uncompromised membranes undergo subsequent apoptosis.
- Subjects :
- Myoblast proliferation
Embryo, Nonmammalian
Duchenne muscular dystrophy
Molecular Sequence Data
Muscle Fibers, Skeletal
Motor Activity
Biology
Open Reading Frames
Myoblast fusion
Sarcolemma
medicine
Animals
Amino Acid Sequence
Muscular dystrophy
Alleles
Zebrafish
Multidisciplinary
Base Sequence
Cell Death
Sequence Homology, Amino Acid
Adhesiveness
Biological Sciences
Muscular Dystrophy, Animal
Oligonucleotides, Antisense
Zebrafish Proteins
medicine.disease
Molecular biology
Muscle atrophy
Extracellular Matrix
Cell biology
Intercellular Junctions
Gene Expression Regulation
Codon, Nonsense
Congenital muscular dystrophy
Mutant Proteins
Laminin
medicine.symptom
ITGA7
Subjects
Details
- ISSN :
- 10916490 and 00278424
- Volume :
- 104
- Database :
- OpenAIRE
- Journal :
- Proceedings of the National Academy of Sciences
- Accession number :
- edsair.doi.dedup.....2ed05f8f462b275384294f1c98894ec8
- Full Text :
- https://doi.org/10.1073/pnas.0700942104