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February 1, 1987The Journal of Biochemistry54 citations

Ca2+- and Sr2+-Sensitivity of the ATPase Activity of Rabbit Skeletal Myofibrils: Effect of the Complete Substitution of Troponin C with Cardiac Troponin C, Calmodulin, and Parvalbumins1

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SMSachio MorimotoFukuoka International UniversityIOIwao OhtsukiJikei University School of Medicine

Key Result

Substitution of skeletal troponin C with cardiac troponin C in rabbit myofibrils increased relative Sr2+ sensitivity 10-fold and halved the maximal slope of the activation curve.

Key Points

  • To investigate the effects of substituting troponin C with cardiac troponin C, calmodulin, and parvalbumins on the ATPase activity sensitivity to divalent cations in rabbit skeletal myofibrils.
  • Treatment with CDTA solution to remove troponin C and myosin light chains from myofibrils
  • Reconstitution of CDTA-treated myofibrils with skeletal or cardiac troponin C
  • Assessment of ATPase activity under varying Ca2+ and Sr2+ concentrations
  • CDTA treatment removed all troponin C; reconstitution with skeletal troponin C restored ATPase activity sensitivity
  • Cardiac troponin C enhanced Sr2+-sensitivity relative to Ca2+-sensitivity by tenfold
  • Calmodulin showed minimal effect unless in excess, whereas parvalbumins did not activate ATPase activity.

Structured PICO

P
Population
Rabbit skeletal myofibrils treated with CDTA to remove troponin C
I
Intervention
Reconstitution with porcine cardiac troponin C, bovine brain calmodulin, or frog skeletal parvalbumins 1 and 2
C
Comparator
Intact myofibrils or CDTA-treated myofibrils reconstituted with skeletal troponin C
O
Outcome
Ca2+- and Sr2+-sensitive ATPase activitysurrogate

The characteristic features of divalent cation regulation in skeletal and cardiac muscle contraction are determined solely by the species of troponin C.

Abstract

The Ca2+-sensitive ATPase activity of rabbit skeletal myofibrils disappeared completely after treatment with a solution containing CDTA, a strong divalent cation chelator, at a low ionic strength. A gel electrophoretic study revealed that all troponin C and about half of myosin light chain 2 were removed from the myofibrils by the CDTA treatment. The CDTA-treated myofibrils, when reconstituted with skeletal troponin C, showed almost exactly the same Ca2+- or Sr2+-sensitive ATPase activity as that of intact myofibrils. The CDTA-treated myofibrils reconstituted with porcine cardiac troponin C showed the same Ca2+- or Sr2+-sensitivity of the ATPase as that of porcine cardiac myofibrils; Sr2+-sensitivity relative to Ca2+-sensitivity was about ten times higher than, and the maximal slope of the activation curve was about half that of skeletal myofibrils. These findings indicate that these characteristic features of divalent cation regulation in the contraction of skeletal and cardiac muscles are determined solely by the species of troponin C. Bovine brain calmodulin hardly activated the ATPase activity of the CDTA-treated myofibrils even in the presence of Ca2+. Excess calmodulin, however, was found to give Ca2+- or Sr2+-sensitivity to the ATPase activity of the CDTA-treated myofibrils. Frog skeletal parvalbumins 1 and 2, even in excess, did not affect the ATPase activity of the CDTA-treated myofibrils.

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Cite This Study

Morimoto et al. (1987) studied this question. Substitution of Troponin C with Cardiac Troponin C, Calmodulin, and Parvalbumins vs. Intact myofibrils or skeletal troponin C reconstituted myofibrils was evaluated on Ca2+- and Sr2+-sensitive ATPase activity. Substitution of skeletal troponin C with cardiac troponin C in rabbit myofibrils increased relative Sr2+ sensitivity 10-fold and halved the maximal slope of the activation curve.

synapsesocial.com/papers/6a3f839f74814fb57809043chttps://doi.org/10.1093/oxfordjournals.jbchem.a121913
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Replacement of Troponin Components in Myofibrils11992 · 37 citations
  2. 2Sensitivity of Actomyosin ATPase to Calcium and Strontium Ions. Effect of Hybrid Troponins11983 · 22 citations
  3. 3The role of troponin C in the length dependence of Ca(2+)‐sensitive force of mammalian skeletal and cardiac muscles.1991 · 70 citations
  4. 4The control of myocardial contraction with skeletal fast muscle troponin C.1987 · 87 citations
  5. 5Mutation of the high affinity calcium binding sites in cardiac troponin C.1992 · 59 citations