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February 21, 1978Biochemistry64 citations

Physical characterization of myosin light chains

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WSWalter F. StaffordASAndrew G. Szent‐Györgyi

Key Points

  • To investigate the size, shape, and stability of myosin light chains from various animal species.
  • Utilized hydrodynamic and analytical gel filtration measurements to assess size and shape.
  • Conducted fluorescence anisotropy decay measurements to evaluate dynamics.
  • Studied the stability of the scallop regulatory light chain using circular dichroic spectroscopy under varying conditions.
  • Light chains exhibited an ellipsoidal shape with a longest axis of approximately 100 +/- A.
  • The circular dichroic spectrum remained stable across a range of pH and temperature (4 to 70 degrees C), suggesting strong internal structural stability.
  • Internal structure stability was largely unaffected by ionic strength and temperature changes.

Abstract

This paper reports the results of an investigation into the size and shape of the low molecular weight subunits (light chains) of myosin from several animal species. Hydrodynamic, analytical gel filtration, and fluorescence anisotropy decay measurements indicated that these light chains could be represented by a general ellipsoidal model having a longest axis of about 100 +/- A. Investigation into the stability of the internal structure of the scallop regulatory light chain was carried out by studying the effect of pH, ionic strength, temperature, and guanidine hydrochloride on its circular dichroic spectrum. The nearly complete insensitivity of the circular dichroic spectrum to pH, ionic strength, and temperature variations from 4 to 70 degrees C indicated that this subunit contained regions of very stable structure which probably exist when it is bound to myosin.

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Cite This Study

Stafford et al. (1978) studied this question.

synapsesocial.com/papers/6a2bbbd13881434d5848454dhttps://doi.org/10.1021/bi00597a008
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