Two-dimensional electrophoresis reveals specific alterations in contractile proteins in certain muscular dystrophies and myopathies.
May support proteomic characterization of myopathies; hypothesis-generating and should not yet change practice.
We used high-resolution two-dimensional electrophoresis to analyze the major proteins of normal and pathological human-muscle samples. The normal human-muscle pattern contains four myosin light chains: three that co-migrate with the myosin light chains from rabbit fast muscle (extensor digitorum longus), and one that co-migrates with the light chain 2 from rabbit slow muscle (soleus). Of seven Duchenne muscular dystrophy samples, four yielded patterns with decreased amounts of actin and myosin relative to normal muscle, while three samples gave patterns comparable to that for normal muscle. Six samples from patients with myotonic dystrophy also gave normal patterns. In nemaline rod myopathy, in contrast, the pattern was deficient in two of the fast-type myosin light chains.
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Giometti et al. (1980) studied this question.
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