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Proteasome expression in the skeletal muscles of patients with muscular dystrophy
T Kumamoto1, S Fujimoto, T Ito
1Third Department of Internal Medicine, Oita Medical University, Hasama, Japan. kumagoro@oita-med.ac.jp
Abstract:
Previous investigators have suggested that proteolysis by calpain, a Ca2+-dependent protease, causes muscle fiber degradation in Duchenne and Becker muscular dystrophies (DMD/BMD). Recent evidence indicates that the nonlysosomal ATP-ubiquitin-dependent proteolytic complex (proteasomes) participates in muscle wasting during various catabolic states and in muscle fiber degradation in physiological or pathological conditions. To elucidate the possible role of proteasomes in dystrophic muscles, routine histochemistry and immunohistochemistry of 26S proteasomes were performed on muscle biopsy specimens obtained from patients with various neuromuscular disorders including DMD/BMD, polymyositis (PM), amyotrophic lateral sclerosis, and peripheral neuropathies, and on normal human muscle specimens. Immunohistochemically, proteasomes were located in the cytoplasm in normal human muscle, but their staining intensity was faint. Compared to control muscles, abnormal increases in both proteasomes and ubiquitin were demonstrated mainly in the cytoplasm of necrotic fibers and to a lesser extent in regenerative fibers in DMD/BMD and PM. Non-necrotic, atrophic fibers in all diseased muscles showed moderate or weak immunoreactions for the proteins; their staining intensities were stronger than those of control muscle fibers. Both proteins often colocalized well. Not all dystrophin-deficient muscle fibers showed a strong reaction for proteasomes. Our results showed increased proteasomes in necrotic and regenerative muscle fibers in DMD/ PMD, although this may not be disease-specific up-regulation. We suggest that the ATP-ubiquitin-dependent proteolytic pathway as well as the nonlysosomal calpain pathway may participate in muscle fiber degradation in muscular dystrophy.
Insights
Increased proteasomes and ubiquitin are found in damaged muscle fibers in muscular dystrophy and polymyositis, suggesting both ATP-ubiquitin-dependent and calpain pathways contribute to muscle fiber degradation.
Area of Science:
- Muscle physiology and pathology
- Cellular degradation pathways
- Neuromuscular disorders
Background:
- Calpain proteolysis is implicated in Duchenne and Becker muscular dystrophies (DMD/BMD) muscle fiber degradation.
- The ATP-ubiquitin-dependent proteasome pathway is involved in muscle wasting and fiber degradation in various conditions.
Purpose of the Study:
- To investigate the role of proteasomes in dystrophic muscles.
- To compare proteasome and ubiquitin levels in various neuromuscular disorders.
Main Methods:
- Histochemistry and immunohistochemistry of 26S proteasomes and ubiquitin.
- Analysis of muscle biopsy specimens from patients with DMD/BMD, polymyositis (PM), ALS, peripheral neuropathies, and normal controls.
Main Results:
- Proteasomes and ubiquitin were increased in the cytoplasm of necrotic and regenerative fibers in DMD/BMD and PM.
- Increased proteasome and ubiquitin staining was observed in atrophic fibers compared to controls.
- Proteasomes and ubiquitin often colocalized, but not all dystrophin-deficient fibers showed strong proteasome reactions.
Conclusions:
- Increased proteasomes are present in necrotic and regenerative muscle fibers in DMD and PM.
- The ATP-ubiquitin-dependent proteolytic pathway, alongside the calpain pathway, may contribute to muscle fiber degradation in muscular dystrophy.