Abstract

We examined the mechanism of atrial natriuretic factor (ANF) transcription by isoproterenol (ISO), an agonist for the beta-adrenergic receptor (betaAR), in cardiac myocytes. ISO only modestly activated members of the mitogen-activated protein kinase family. ISO-induced ANF transcription was not affected by inhibition of mitogen-activated protein kinases, whereas it was significantly inhibited by KN93, an inhibitor of Ca(2+)/calmodulin-dependent kinase (CaM kinase II). Production of 3'-phosphorylated phosphatidylinositides (3 phosphoinositides) was also required for ISO-induced ANF transcription. ISO caused phosphorylation (Ser-473) and activation of Akt through CaM kinase II- and 3 phosphoinositides-dependent mechanisms. Constitutively active Akt increased myocyte surface area, total protein content, and ANF expression, whereas dominant negative Akt blocked ISO-stimulated ANF transcription. ISO caused Ser-9 phosphorylation and decreased activities of GSK3beta. Overexpression of GSK3beta inhibited ANF transcription, which was reversed by ISO. ISO failed to reverse the inhibitory effect of GSK3beta(S9A), an Akt-insensitive mutant. Kinase-inactive GSK3beta increased ANF transcription. Cyclosporin A partially inhibited ISO-stimulated ANF transcription, indicating that calcineurin only partially mediates ANF transcription. These results suggest that both CaM kinase II and 3 phosphoinositides mediate betaAR-induced Akt activation and ANF transcription in cardiac myocytes. Furthermore, betaAR-stimulated ANF transcription is predominantly mediated by activation of Akt and subsequent phosphorylation/inhibition of GSK3beta.

Highlights

  • We examined the mechanism of atrial natriuretic factor (ANF) transcription by isoproterenol (ISO), an agonist for the ␤-adrenergic receptor (␤AR), in cardiac myocytes

  • We studied the mechanism of ANF transcription, because ANF transcription in ventricular myocytes is frequently activated in many types of cardiac hypertrophy, and the result of this investigation may be compared with those of previous studies regarding the mechanism of ANF transcription by stimulation of the Gq-coupled receptors

  • The Ras-MAPK Pathway Does Not Mediate Activation of ANF by ␤AR Stimulation—Because the Ras-MAP kinase (ERKs, JNKs, and p38-MAPK) pathways mediate cardiac hypertrophy initiated by many growth factors [10, 45], we examined whether these mechanisms are critical for ANF transcription by ␤AR stimulation

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Summary

Introduction

We examined the mechanism of atrial natriuretic factor (ANF) transcription by isoproterenol (ISO), an agonist for the ␤-adrenergic receptor (␤AR), in cardiac myocytes. Active Akt increased myocyte surface area, total protein content, and ANF expression, whereas dominant negative Akt blocked ISO-stimulated ANF transcription. These results suggest that both CaM kinase II and 3 phosphoinositides mediate ␤AR-induced Akt activation and ANF transcription in cardiac myocytes.

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