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Thrombospondin-4 deletion does not exacerbate muscular dystrophy in β-sarcoglycan-deficient and laminin α2
1Muscle Biology Unit, Department of Experimental Medical Science, Lund University, BMC C12, 221 84, Lund, Sweden.
Abstract:
Muscular dystrophy is a group of genetic disorders that lead to muscle wasting and loss of muscle function. Identifying genetic modifiers that alleviate symptoms or enhance the severity of a primary disease helps to understand mechanisms behind disease pathology and facilitates discovery of molecular targets for therapy. Several muscular dystrophies are caused by genetic defects in the components of the dystrophin-glycoprotein adhesion complex (DGC). Thrombospondin-4 overexpression has been shown to mitigate dystrophic disease in mouse models for Duchenne muscular dystrophy (dystrophin deficiency) and limb-girdle muscular dystrophy type 2F (LGMD2F, δ-sarcoglycan deficiency), while deletion of the thrombospondin-4 gene exacerbated the diseases. Hence, thrombospondin-4 has been considered a candidate molecule for therapy of muscular dystrophies involving the DGC. We have investigated whether thrombospondin-4 could act as a genetic modifier for other DGC-associated diseases: limb-girdle muscular dystrophy type 2E (LGMD2E, β-sarcoglycan deficiency) and laminin α2 chain-deficient muscular dystrophy (LAMA2-RD). Deletion of the thrombospondin-4 gene in mouse models for LGMD2E and LAMA2-RD, respectively, did not result in worsening of the dystrophic phenotype. Loss of thrombospondin-4 did not enhance sarcolemma damage and did not impair trafficking of transmembrane receptors integrin α7β1 and dystroglycan in double knockout muscles. Our results suggest that thrombospondin-4 might not be a relevant therapeutic target for all muscular dystrophies involving the DGC. This data also demonstrates that molecular pathology between very similar diseases like LGMD2E and 2F can differ significantly.
Insights
Thrombospondin-4 does not worsen muscular dystrophy in mouse models lacking beta-sarcoglycan or laminin alpha2. This suggests thrombospondin-4 may not be a universal therapeutic target for dystrophin-glycoprotein complex-related muscular dystrophies.
Area of Science:
- Genetics
- Molecular Biology
- Neurology
Background:
- Muscular dystrophies are genetic disorders causing muscle wasting.
- Defects in the dystrophin-glycoprotein complex (DGC) cause several muscular dystrophies.
- Thrombospondin-4 (TSP4) has shown therapeutic potential in some muscular dystrophy models.
Purpose of the Study:
- To investigate TSP4 as a genetic modifier in limb-girdle muscular dystrophy type 2E (LGMD2E) and laminin α2 chain-deficient muscular dystrophy (LAMA2-RD).
- To determine if TSP4 deletion exacerbates DGC-associated muscular dystrophies.
Main Methods:
- Generated double knockout mouse models for TSP4 deletion combined with LGMD2E or LAMA2-RD.
- Assessed muscle pathology, sarcolemma damage, and receptor trafficking in the double knockout models.
Main Results:
- Deletion of TSP4 did not worsen the dystrophic phenotype in LGMD2E or LAMA2-RD mouse models.
- Loss of TSP4 did not increase sarcolemma damage or affect integrin α7β1 and dystroglycan trafficking.
- Significant differences in molecular pathology exist between similar DGC-related muscular dystrophies (e.g., LGMD2E vs. LGMD2F).
Conclusions:
- TSP4 is not a relevant therapeutic target for all DGC-associated muscular dystrophies.
- The molecular mechanisms underlying different muscular dystrophies, even within the DGC-related group, can vary significantly.
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