Muscle Structure Influences Utrophin Expression in mdx Mice

作者:Banks Glen B*; Combs Ariana C; Odom Guy L; Bloch Robert J; Chamberlain Jeffrey S
来源:PLoS Genetics, 2014, 10(6): e1004431.
DOI:10.1371/journal.pgen.1004431

摘要

Duchenne muscular dystrophy (DMD) is a severe muscle wasting disorder caused by mutations in the dystrophin gene. To examine the influence of muscle structure on the pathogenesis of DMD we generated mdx(4cv) : desmin double knockout (dko) mice. The dko male mice died of apparent cardiorespiratory failure at a median age of 76 days compared to 609 days for the desmin(-/-) mice. An similar to 2.5 fold increase in utrophin expression in the dko skeletal muscles prevented necrosis in similar to 91% of 1a, 2a and 2d/x fiber-types. In contrast, utrophin expression was reduced in the extrasynaptic sarcolemma of the dko fast 2b fibers leading to increased membrane fragility and dystrophic pathology. Despite lacking extrasynaptic utrophin, the dko fast 2b fibers were less dystrophic than the mdx(4cv) fast 2b fibers suggesting utrophin-independent mechanisms were also contributing to the reduced dystrophic pathology. We found no overt change in the regenerative capacity of muscle stem cells when comparing the wild-type, desmin(-/-), mdx(4cv) and dko gastrocnemius muscles injured with notexin. Utrophin could form costameric striations with alpha-sarcomeric actin in the dko to maintain the integrity of the membrane, but the lack of restoration of the NODS (nNOS, alpha-dystrobrevin 1 and 2, alpha 1-syntrophin) complex and desmin coincided with profound changes to the sarcomere alignment in the diaphragm, deposition of collagen between the myofibers, and impaired diaphragm function. We conclude that the dko mice may provide new insights into the structural mechanisms that influence endogenous utrophin expression that are pertinent for developing a therapy for DMD.

  • 出版日期2014-6

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