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PMID: 14604861 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Vesicular exocytosis contributes to volume-sensitive ATP release in biliary cells.

American journal of physiology. Gastrointestinal and liver physiology ·Vol. 286 ·No. 4 ·2004-04-00 ·Pages G538-46

Gatof D, Kilic G, Fitz JG

Abstract

Extracellular ATP is a potent autocrine/paracrine signal that regulates a broad range of liver functions through activation of purinergic receptors. In biliary epithelium, increases in cell volume stimulate ATP release through a phosphoinositide 3-kinase (PI3-kinase)-dependent mechanism. Because PI3-kinase also regulates vesicular exocytosis, the purpose of these studies was to determine whether volume-stimulated vesicular exocytosis contributes to cellular ATP release. In a human cholangiocarcinoma cell line, exocytosis was measured by using the plasma membrane marker FM1-43, whereas ATP release was assessed by using a luciferase-luciferin assay. Under basal conditions, cholangiocytes exhibited constitutive exocytosis at a rate of 1.6%/min, and low levels of extracellular ATP were detected at 48.2 arbitrary light units. Increases in cholangiocyte cell volume induced by hypotonic exposure resulted in a 10-fold increase in the rate of exocytosis and a robust 35-fold increase in ATP release. Both vesicular exocytosis and ATP release were proportional to cell volume, and both exhibited similar regulatory properties including: 1) dependence on intact PI3-kinase, 2) attenuation by inhibition of PKC, and 3) potentiation by activation of PKC before hypotonic exposure. These findings demonstrate that increases in cholangiocyte cell volume stimulate ATP release and vesicular exocytosis through similar regulatory paradigms. Functional interactions among cell volume, PKC, and PI3-kinase modulate exocytosis, thereby regulating ATP release and purinergic signaling in cholangiocytes. It is hypothesized that PKC is involved in the recruitment of a volume-sensitive vesicular pool to a readily releasable state.

MeSH Terms
Adenocarcinoma/metabolism Adenosine Triphosphate/metabolism Cell Line, Tumor Cell Membrane/metabolism Cell Size Cyclic AMP/physiology Enzyme Activators/pharmacology Enzyme Inhibitors/pharmacology Epithelial Cells/drug effects,metabolism Exocytosis/drug effects,physiology Fluorescence Gallbladder/cytology,drug effects,metabolism Gallbladder Neoplasms/metabolism Humans Osmolar Concentration Phosphatidylinositol 3-Kinases/physiology Phosphoinositide-3 Kinase Inhibitors Protein Kinase C/antagonists & inhibitors,physiology
Chemicals
Enzyme Activators Enzyme Inhibitors Phosphoinositide-3 Kinase Inhibitors Adenosine Triphosphate Cyclic AMP Protein Kinase C
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Gatof David
Department of Medicine, University of Colorado Health Sciences Center, Denver, CO 80262, USA. [email protected]
Kilic Gordan
Fitz J Gregory
Article Info
Journal
American journal of physiology. Gastrointestinal and liver physiology
Abbr.
Am J Physiol Gastrointest Liver Physiol
ISSN
0193-1857
Published
2004-04-00
Epub
2003-00-06
Pages
G538-46
Language
English
Region
United States
NLM ID
100901227
Subset
IM
Grants
NIDDK NIH HHS · DK-43278 · United States
NIDDK NIH HHS · DK-46082 · United States
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