Key result
Cyclophilin D ablation prevents myofiber degeneration and rescues mitochondrial dysfunction in Col6a1 knockout mice.
Why the study?
The pathogenesis of collagen VI muscular dystrophies involves mitochondrial dysfunction linked to cyclophilin D-dependent permeability transition pore opening, but causal relationships and therapeutic targets remain to be established.
Genetic ablation of cyclophilin D rescues the dystrophic phenotype in a mouse model of collagen VI muscular dystrophy, validating Cyp-D and the permeability transition pore as pharmacological targets.
May support CypD inhibition in collagen VI dystrophy; leaves open translation to patients pending clinical trials.
Ullrich congenital muscular dystrophy (UCMD) and Bethlem myopathy are inherited muscle disorders caused by mutations of genes encoding the extracellular matrix protein collagen VI (ColVI). Mice lacking ColVI (Col6a1(-/-)) display a myopathic phenotype associated with ultrastructural alterations of mitochondria and sarcoplasmic reticulum, mitochondrial dysfunction with abnormal opening of the permeability transition pore (PTP) and increased apoptosis of muscle fibers. Treatment with cyclosporin (Cs) A, a drug that desensitizes the PTP by binding to cyclophilin (Cyp)-D, was shown to rescue myofiber alterations in Col6a1(-/-) mice and in UCMD patients, suggesting a correlation between PTP opening and pathogenesis of ColVI muscular dystrophies. Here, we show that inactivation of the gene encoding for Cyp-D rescues the disease phenotype of ColVI deficiency. In the absence of Cyp-D, Col6a1(-/-) mice show negligible myofiber degeneration, rescue from mitochondrial dysfunction and ultrastructural defects, and normalized incidence of apoptosis. These findings (i) demonstrate that lack of Cyp-D is equivalent to its inhibition with CsA at curing the mouse dystrophic phenotype; (ii) establish a cause-effect relationship between Cyp-D-dependent PTP regulation and pathogenesis of the ColVI muscular dystrophy and (iii) validate Cyp-D and the PTP as pharmacological targets for the therapy of human ColVI myopathies.
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Palma et al. (2009) studied Collagen VI muscular dystrophies (Ullrich congenital muscular dystrophy and Bethlem myopathy). Genetic ablation of cyclophilin D vs. Col6a1(-/-) mice with intact cyclophilin D was evaluated on Myofiber degeneration, mitochondrial dysfunction, ultrastructural defects, and incidence of apoptosis. Genetic ablation of cyclophilin D in Col6a1(-/-) mice rescued the disease phenotype, resulting in negligible myofiber degeneration, rescued mitochondrial dysfunction, and normalized apoptosis.
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