Key result
Reducing external Ca2+ concentration to 0.5 mM or replacing it with Ba2+ increased the responsiveness of cardiac L-type Ca2+ current to PKA stimulation by forskolin from 20% to 100%.
Absolute Event Rate: 100% vs 20%
Intracellular Ca2+ entering through voltage-gated channels regulates the PKA responsiveness of the cardiac L-type Ca2+ current via a calmodulin-dependent mechanism.
Suggests Ca2+-dependent tuning of L-type current PKA responsiveness in vitro; leaves open in vivo relevance or therapeutic implications.
The goal of this study was to determine whether the protein kinase A (PKA) responsiveness of the cardiac L-type Ca(2+) current (ICa) is affected during transient increases in intracellular Ca(2+) concentration. Ventricular myocytes were isolated from 3- to 4-day-old neonatal rats and cultured on aligned collagen thin gels. When measured in 1 or 2 mM Ca(2+) external solution, the aligned myocytes displayed a large ICa that was weakly regulated (20% increase) during stimulation of PKA by 2 microM forskolin. In contrast, application of forskolin caused a 100% increase in ICa when the external Ca(2+) concentration was reduced to 0.5 mM or replaced with Ba(2+). This Ca(2+)-dependent inhibition was also observed when the cells were treated with 1 microM isoproterenol, 100 microM 3-isobutyl-1-methylxanthine, or 500 microM 8-bromo-cAMP. The responsiveness of ICa to PKA was restored during intracellular dialysis with a calmodulin (CaM) inhibitory peptide but not during treatment with inhibitors of protein kinase C, Ca(2+)/CaM-dependent protein kinase, or calcineurin. Adenoviral-mediated expression of a CaM molecule with mutations in all four Ca(2+)-binding sites also increased the PKA sensitivity of ICa. Finally, adult mouse ventricular myocytes displayed a greater response to forskolin and cAMP in external Ba(2+). Thus Ca(2+) entering the myocyte through the voltage-gated Ca(2+) channel regulates the PKA responsiveness of ICa.
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Walsh et al. (2004) studied this question. Forskolin and external Ca2+ reduction vs. 1 or 2 mM Ca2+ external solution was evaluated on PKA responsiveness of the cardiac L-type Ca(2+) current (ICa). Reducing external Ca2+ concentration to 0.5 mM or replacing it with Ba2+ increased the responsiveness of cardiac L-type Ca2+ current to PKA stimulation by forskolin from 20% to 100%.
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