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March 1, 1963The Journal of General Physiology233 citationsOpen Access

On the Mechanism of the Relaxing Effect of Fragmented Sarcoplasmic Reticulum

AWAnnemarie WeberRHRuth HerzIRI Reiss

Key Points

  • The study aims to understand how fragmented sarcoplasmic reticulum induces relaxation in muscle fibers by influencing calcium interactions.
  • In vitro experiments to assess calcium removal by fragmented sarcoplasmic reticulum vesicles.
  • Correlation analysis between calcium dissociation and myofibrillar activity inhibition.
  • Measurement of ionized calcium concentrations in the surrounding medium during these reactions.
  • Fragmented sarcoplasmic reticulum vesicles reduce ionized Ca concentration to approximately 0.02 microM.
  • A strong correlation is observed between calcium removal and inhibition of myofibrillar activity by ATP.
  • The relaxing effect is primarily achieved through the dissociation of the Ca-actomyosin complex.

Abstract

The vesicles of fragmented sarcoplasmic reticulum, i.e. the physiological relaxing factor, remove most of the exchangeable Ca bound to actomyosin and myofibrils. The extent to which they remove Ca and the extent to which they inhibit myofibrillar activity are closely correlated. Previous work has shown that those in vitro reactions of actomyosin with ATP which are equivalent to its contraction, i.e. superprecipitation and a high ATPase activity, require the formation of a Ca-actomyosin complex, and that actomyosin after the removal of most of its bound Ca is inhibited by physiological concentrations of ATP. The evidence now suggests that the factor achieves its relaxing effect through the dissociation of the Ca-actomyosin complex and that it has no other direct influence on the biological activity of actomyosin. Experiments, showing that under similar conditions the vesicles of the factor are capable of reducing the concentration of ionized Ca in the surrounding medium to about 0.02 microM and less, suggest that the factor competes successfully with actomyosin for the available Ca through its mechanism of Ca accumulation.

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Cite This Study

Weber et al. (1963) studied this question.

synapsesocial.com/papers/6a6ac05d3e46b6df0af2dc3ahttps://doi.org/10.1085/jgp.46.4.679
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