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August 1, 1970Biochemical Journal711 citationsOpen Access

An electrophoretic study of the low-molecular-weight components of myosin

WPW. T. PerrieSPS V Perry

Key Points

  • This study aims to analyze the low-molecular-weight components of myosin and understand how they differ across muscle types.
  • Conducted electrophoresis on low-molecular-weight myosin components from adult rabbit skeletal muscle under varying ionic conditions.

Structured PICO

P
Population
Myosin isolated from skeletal, cardiac, and red muscle of adult rabbit, rat, mouse, hamster, pigeon, and chicken
I
Intervention
Polyacrylamide-gel electrophoresis in 8m-urea
O
Outcome
Electrophoretic banding patterns of low-molecular-weight components of myosinsurrogate

Electrophoretic analysis reveals distinct banding patterns for low-molecular-weight components of myosin from different muscle types, including cardiac muscle, suggesting varying isoenzyme compositions.

Abstract

The low-molecular-weight components of myosin freshly prepared by the standard procedure from adult rabbit skeletal muscle migrated as four main bands Ml(1), Ml(2), Ml(3) and Ml(4) on polyacrylamide-gel electrophoresis in 8m-urea. 2. The number of bands increased on storage. This change was accelerated by increasing the temperature and pH. 3. None of the bands had electrophoretic mobilities identical with those of the well-characterized proteins of the myofibril or with the sarcoplasmic proteins. 4. By varying the ionic conditions and concentration of muscle mince used for the initial extraction it was possible to change the relative proportions of the two electrophoretic bands of intermediate mobility, Ml(2) and Ml(3). 5. The four-band picture similar to that obtained with rabbit was observed with myosin isolated from skeletal muscle of the rat, mouse, hamster, pigeon and chicken. 6. Rabbit cardiac myosin gave only two bands on electrophoresis. Myosin from rabbit red muscle gave a pattern intermediate between cardiac and white-skeletal-muscle myosin, i.e. the two fastest bands were present in decreased relative amounts. 7. It is suggested that the differences in the low-molecular-weight components of myosin from different types of muscle are a consequence of differences in the isoenzyme composition of the myosins.

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Cite This Study

Perrie et al. (1970) studied this question.

synapsesocial.com/papers/6a1bf2fe27b545b111a93f0fhttps://doi.org/10.1042/bj1190031
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