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Viral-mediated expression of desmin mutants to create mouse models of myofibrillar myopathy
- Source :
- Skeletal Muscle, Skeletal Muscle, 2013, 3 (1), pp.4. ⟨10.1186/2044-5040-3-4⟩, Skeletal Muscle, BioMed Central, 2013, 3 (1), pp.4. ⟨10.1186/2044-5040-3-4⟩
- Publication Year :
- 2013
- Publisher :
- HAL CCSD, 2013.
-
Abstract
- Background The clinical features of myofibrillar myopathies display a wide phenotypic heterogeneity. To this date, no studies have evaluated this parameter due to the absence of pertinent animal models. By studying two mutants of desmin, which induce subtle phenotypic differences in patients, we address this issue using an animal model based on the use of adeno-associated virus (AAV) vectors carrying mutated desmin cDNA. Methods After preparation of the vectors, they were injected directly into the tibialis anterior muscles of C57BL/6 mice to allow expression of wild-type (WT) or mutated (R406W or E413K) desmin. Measurements of maximal force were carried out on the muscle in situ and then the injected muscles were analyzed to determine the structural consequences of the desmin mutations on muscle structure (microscopic observations, histology and immunohistochemistry). Results Injection of AAV carrying WT desmin results in the expression of exogenous desmin in 98% of the muscle fibers without any pathological or functional perturbations. Exogenous WT and endogenous desmin are co-localized and no differences were observed compared to non-injected muscle. Expression of desmin mutants in mouse muscles induce morphological changes of muscle fibers (irregular shape and size) and the appearance of desmin accumulations around the nuclei (for R406W) or in subsarcolemmal regions of fibers (for E413K). These accumulations seem to occur and disrupt the Z-line, and a strong regeneration was observed in muscle expressing the R406W desmin, which is not the case for E413K. Moreover, both mutants of desmin studied here induce a decrease in muscle force generation capacity. Conclusions In this study we show that AAV-mediated expression of desmin mutants in mouse muscles recapitulate the aggregation features, the decrease in contractile function and the morphological changes observed in patients with myofibrillar myopathy. More importantly, our results suggest that the R406W desmin mutant induces a robust muscle regeneration, which is not the case for the E413K mutant. This difference could help to explain the phenotypic differences observed in patients. Our results highlight the heterogeneous pathogenic mechanisms between different desmin mutants and open the way for new advances in the study of myofibrillar myopathies.
- Subjects :
- Mutant
Myofibrillar myopathy
macromolecular substances
Biology
Bioinformatics
Desmin
AAV vectors
03 medical and health sciences
0302 clinical medicine
Orthopedics and Sports Medicine
[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]
Intermediate filament
Molecular Biology
Phenotypic heterogeneity
030304 developmental biology
0303 health sciences
Research
Regeneration (biology)
Desminopathy
Histology
Cell Biology
musculoskeletal system
Phenotype
Cell biology
Immunohistochemistry
[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]
Myofibril
030217 neurology & neurosurgery
Subjects
Details
- Language :
- English
- ISSN :
- 20445040
- Database :
- OpenAIRE
- Journal :
- Skeletal Muscle, Skeletal Muscle, 2013, 3 (1), pp.4. ⟨10.1186/2044-5040-3-4⟩, Skeletal Muscle, BioMed Central, 2013, 3 (1), pp.4. ⟨10.1186/2044-5040-3-4⟩
- Accession number :
- edsair.doi.dedup.....4b0b98ad2863f414b6ab27fa272c0a95
- Full Text :
- https://doi.org/10.1186/2044-5040-3-4⟩