PKC activation in isolated rat cardiomyocytes phosphorylates troponin I and C-protein, reducing maximal myofibrillar Ca2+-dependent actomyosin MgATPase activity, distinct from PKA activation.
PKC activation (TPA or alpha-adrenoreceptor stimulation) vs PKA activation (isoproterenol)
Phosphorylation of troponin I and C-protein and effect on myofibrillar actomyosin MgATPase activity
Phosphorylation of cardiac myofibrillar proteins by protein kinase C (PKC) in isolated adult rat cardiomyocytes has been compared with that mediated by the cAMP-dependent protein kinase (PKA). PKA activation by beta-adrenoreceptor (isoproterenol) stimulation results in stoichiometric phosphorylation of troponin I (TnI) and C-protein. PKC activation by either 12-O-tetradecanoylphorbol-13-acetate (TPA) or by alpha-adrenoreceptor (phenylephrine plus propranolol) stimulation results in phosphorylation of the same two proteins to similar extents. Two-dimensional phosphopeptide mapping shows that the same sites in TnI are modified by PKC in vitro and in TPA- or alpha-agonist-stimulated cells. These sites are distinct from those phosphorylated in isoproterenol-stimulated cells or by PKA in vitro. Phosphopeptide mapping analysis of C-protein shows that PKC and PKA phosphorylate identical residues in this protein in vitro and in situ. TPA-stimulated phosphorylation in myocytes is associated with a reduction in maximal activity of myofibrillar Ca(2+)-dependent actomyosin MgATPase. Isoproterenol-stimulated phosphorylation has no effect on maximal activity but reduces the Ca2+ sensitivity of the MgATPase. These data demonstrate that TnI and C-protein are phosphorylated in myocardial cells by both PKA and PKC, resulting in different functional consequences in each case.
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R C Venema
Graduate School USA
J.F. Kuo
Cross-Cutting Cardiology
Journal of Biological Chemistry
Emory University
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Venema et al. (Mon,) reported a other. PKC activation (TPA or alpha-adrenoreceptor stimulation) vs. PKA activation (isoproterenol) was evaluated on Phosphorylation of troponin I and C-protein and effect on myofibrillar actomyosin MgATPase activity. PKC activation in isolated rat cardiomyocytes phosphorylates troponin I and C-protein, reducing maximal myofibrillar Ca2+-dependent actomyosin MgATPase activity, distinct from PKA activation.
synapsesocial.com/papers/6a0f5a857b46c501a19bcb5d — DOI: https://doi.org/10.1016/s0021-9258(18)53831-x