The Journal of Medical Investigation
Online ISSN : 1349-6867
Print ISSN : 1343-1420
ISSN-L : 1343-1420
Signal Transduction of the Glandular Tissue
Role of protein kinase C-δ in isoproterenol-induced amylase release in rat parotid acinar cells
Hiroshi SugiyaKeitaro SatohMiwako Matsuki-FukushimaBing QiMing-Yu GuoJunko Fujita-Yoshigaki
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2009 Volume 56 Issue Supplement Pages 368-370

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Abstract
In parotid acinar cells, β-adrenergic receptor activation results in accumulation of intracellular cAMP. Subsequently, cAMP-dependent protein kinase (PKA) is activated and consequently amylase release is provoked. In this paper, we investigated involvement of protein kinase C-δ (PKCδ), a novel isoform of PKC, in amylase release induced by β-adrenergic receptor stimulation. Amylase release stimulated with the β-agonsit isoproterenol (IPR) was inhibited by rottlerin, an inhibitor of PKCδ. IPR activated PKCδ and the effect of IPR were inhibited by a PKA inhibitor, H89. Myristoylated alanine-rich C kinase substrate (MARCKS), a major cellular substrate for PKC, was detected in rat parotid acinar cells, and a MARCKS inhibitor, MARCKS-related peptide, inhibited the IPR-induced amylase release. IPR stimulated MARCKS phosphorylation, which was found to be inhibited by H89 and rottlerin. These observations suggest that PKCδ activation is a downstream pathway of PKA activation and is involved in amylase release via MARCKS phosphorylation in rat parotid acinar cells stimulated with β-adrenergic agonist. J. Med. Invest. 56 Suppl.: 368-370, December, 2009
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© 2009 by The University of Tokushima Faculty of Medicine
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