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PMID: 11694504 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Phosphorylation of inositol 1,4,5-trisphosphate receptors in parotid acinar cells. A mechanism for the synergistic effects of cAMP on Ca2+ signaling.

The Journal of biological chemistry ·Vol. 277 ·No. 2 ·2002-01-11 ·Pages 1340-8

Bruce JI, Shuttleworth TJ, Giovannucci DR, Yule DI

Abstract

Acetylcholine-evoked secretion from the parotid gland is substantially potentiated by cAMP-raising agonists. A potential locus for the action of cAMP is the intracellular signaling pathway resulting in elevated cytosolic calcium levels ([Ca(2+)](i)). This hypothesis was tested in mouse parotid acinar cells. Forskolin dramatically potentiated the carbachol-evoked increase in [Ca(2+)](i), converted oscillatory [Ca(2+)](i) changes into a sustained [Ca(2+)](i) increase, and caused subthreshold concentrations of carbachol to increase [Ca(2+)](i) measurably. This potentiation was found to be independent of Ca(2+) entry and inositol 1,4,5-trisphosphate (InsP(3)) production, suggesting that cAMP-mediated effects on Ca(2+) release was the major underlying mechanism. Consistent with this hypothesis, dibutyryl cAMP dramatically potentiated InsP(3)-evoked Ca(2+) release from streptolysin-O-permeabilized cells. Furthermore, type II InsP(3) receptors (InsP(3)R) were shown to be directly phosphorylated by a protein kinase A (PKA)-mediated mechanism after treatment with forskolin. In contrast, no evidence was obtained to support direct PKA-mediated activation of ryanodine receptors (RyRs). However, inhibition of RyRs in intact cells, demonstrated a role for RyRs in propagating Ca(2+) oscillations and amplifying potentiated Ca(2+) release from InsP(3)Rs. These data indicate that potentiation of Ca(2+) release is primarily the result of PKA-mediated phosphorylation of InsP(3)Rs, and may largely explain the synergistic relationship between cAMP-raising agonists and acetylcholine-evoked secretion in the parotid. In addition, this report supports the emerging consensus that phosphorylation at the level of the Ca(2+) release machinery is a broadly important mechanism by which cells can regulate Ca(2+)-mediated processes.

MeSH Terms
Animals Caffeine/pharmacology Calcium/metabolism Calcium Channels/metabolism Calcium Signaling/physiology Carbachol/pharmacology Cholinergic Agonists/pharmacology Colforsin/pharmacology Cyclic AMP/analogs & derivatives,metabolism Cyclic AMP-Dependent Protein Kinase Type II Cyclic AMP-Dependent Protein Kinases/antagonists & inhibitors,metabolism Enzyme Inhibitors/pharmacology Inositol 1,4,5-Trisphosphate/metabolism Inositol 1,4,5-Trisphosphate Receptors Isoquinolines/pharmacology Mice Parotid Gland/cytology,drug effects,metabolism Phosphorylation Receptors, Cytoplasmic and Nuclear/metabolism Ryanodine/pharmacology Ryanodine Receptor Calcium Release Channel/metabolism Sulfonamides
Chemicals
Calcium Channels Cholinergic Agonists Enzyme Inhibitors Inositol 1,4,5-Trisphosphate Receptors Isoquinolines Receptors, Cytoplasmic and Nuclear Ryanodine Receptor Calcium Release Channel Sulfonamides Ryanodine Colforsin Caffeine Inositol 1,4,5-Trisphosphate Carbachol Cyclic AMP Cyclic AMP-Dependent Protein Kinase Type II Cyclic AMP-Dependent Protein Kinases N-(2-(4-bromocinnamylamino)ethyl)-5-isoquinolinesulfonamide Calcium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Bruce Jason I E
Department of Pharmacology & Physiology, School of Medicine and Dentistry, University of Rochester Medical Center, Rochester, New York 14642, USA. jason_bruce@urmc.rochester.edu
Shuttleworth Trevor J
Giovannucci David R
Yule David I
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-01-11
Epub
2001-00-01
Pages
1340-8
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIDCR NIH HHS · DEO 13539 · United States
NIDDK NIH HHS · DK54568 · United States
NIGMS NIH HHS · GM 40457 · United States
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