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September 1, 2002AJP Heart and Circulatory Physiology59 citations

Troponin I serines 43/45 and regulation of cardiac myofilament function

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WPW. Glen PyleMSMarius P. SumandeaRSR. John Solaro

Key Result

Transgenic mice with cTnI S43A/S45A mutations showed a 13% decrease in maximum tension and a 20% increase in maximum MgATPase activity compared to wild-type mice.

Structured PICO

P
Population
Transgenic mice (TG) with cardiac troponin I (cTnI) serines 43 and 45 mutated to alanines (cTnI S43A/S45A) and wild-type (WT) mice
I
Intervention
Protein kinase C (PKC) activation with endothelin (ET) or phenylephrine plus propranolol (PP)
C
Comparator
Wild-type (WT) mice
O
Outcome
Ca(2+) dependence of tension and actomyosin ATPase ratesurrogate

PKC-mediated phosphorylation of cTnI S43/S45 plays an important role in the control of myofilament activation and cross-bridge cycling rate.

Abstract

We studied Ca(2+) dependence of tension and actomyosin ATPase rate in detergent extracted fiber bundles isolated from transgenic mice (TG), in which cardiac troponin I (cTnI) serines 43 and 45 were mutated to alanines (cTnI S43A/S45A). Basal phosphorylation levels of cTnI were lower in TG than in wild-type (WT) mice, but phosphorylation of cardiac troponin T was increased. Compared with WT, TG fiber bundles showed a 13% decrease in maximum tension and a 20% increase in maximum MgATPase activity, yielding an increase in tension cost. Protein kinase C (PKC) activation with endothelin (ET) or phenylephrine plus propranolol (PP) before detergent extraction induced a decrease in maximum tension and MgATPase activity in WT fibers, whereas ET or PP increased maximum tension and stiffness in TG fibers. TG MgATPase activity was unchanged by ET but increased by PP. Measurement of protein phosphorylation revealed differential effects of agonists between WT and TG myofilaments and within the TG myofilaments. Our results demonstrate the importance of PKC-mediated phosphorylation of cTnI S43/S45 in the control of myofilament activation and cross-bridge cycling rate.

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Cite This Study

Pyle et al. (2002) studied Cardiac myofilament function. cTnI S43A/S45A mutation and PKC activation vs. Wild-type mice was evaluated on Ca(2+) dependence of tension and actomyosin ATPase rate. Transgenic mice with cTnI S43A/S45A mutations showed a 13% decrease in maximum tension and a 20% increase in maximum MgATPase activity compared to wild-type mice.

synapsesocial.com/papers/6a15dfe4665e751854d12341https://doi.org/10.1152/ajpheart.00128.2002
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Also Consider

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

  1. 1α-Adrenergic response and myofilament activity in mouse hearts lacking PKC phosphorylation sites on cardiac TnI2002 · 61 citations
  2. 2Phosphorylation or Glutamic Acid Substitution at Protein Kinase C Sites on Cardiac Troponin I Differentially Depress Myofilament Tension and Shortening Velocity2003 · 157 citations
  3. 3Troponin I protein kinase C phosphorylation sites and ventricular function2004 · 25 citations
  4. 4Protein kinase C and A sites on troponin I regulate myofilament Ca<sup>2+</sup> sensitivity and ATPase activity in the mouse myocardium2003 · 123 citations
  5. 5Transgenic incorporation of skeletal TnT into cardiac myofilaments blunts PKC-mediated depression of force2001 · 50 citations