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Publication : Muscular dystrophy in mdx mice despite lack of neuronal nitric oxide synthase.

First Author  Chao DS Year  1998
Journal  J Neurochem Volume  71
Issue  2 Pages  784-9
PubMed ID  9681470 Mgi Jnum  J:48851
Mgi Id  MGI:1275884 Doi  10.1046/j.1471-4159.1998.71020784.x
Citation  Chao DS, et al. (1998) Muscular dystrophy in mdx mice despite lack of neuronal nitric oxide synthase. J Neurochem 71(2):784-9
abstractText  Neuronal nitric oxide synthase (nNOS) is a component of the dystrophin complex in skeletal muscle. The absence of dystrophin protein in Duchenne muscular dystrophy and in mdx mouse causes a redistribution of nNOS from the plasma membrane to the cytosol in muscle cells. Aberrant nNOS activity in the cytosol can induce free radical oxidation, which is toxic to myofibers. To test the hypothesis that derangements in nNOS disposition mediate muscle damage in Duchenne dystrophy, we bred dystrophin-deficient mdx male mice and female mdx heterozygote mice that lack nNOS. We found that genetic deletion of nNOS does not itself cause detectable pathology and that removal of nNOS does not influence the extent of increased sarcolemmal permeability in dystrophin-deficient mice. Thus, histological analyses of nNOS-dystrophin double mutants show pathological changes similar to the dystrophin mutation alone. Taken together, nNOS defects alone do not produce muscular dystrophy in the mdx model.
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