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Citations to this article

Proliferation-dependent changes in release of arachidonic acid from endothelial cells.
R E Whatley, … , T M McIntyre, S M Prescott
R E Whatley, … , T M McIntyre, S M Prescott
Published November 1, 1994
Citation Information: J Clin Invest. 1994;94(5):1889-1900. https://doi.org/10.1172/JCI117539.
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Research Article

Proliferation-dependent changes in release of arachidonic acid from endothelial cells.

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Abstract

Stimulation of endothelial cells resulted in release of arachidonic acid from phospholipids. The magnitude of this response decreased as the cells became confluent and the change coincided with a decrease in the percentage of cells in growth phases (G2+M); this was not a consequence of time in culture or a factor in the growth medium. Preconfluent cells released approximately 30% of arachidonic acid; confluent cells released only 6%. The decreasing release of arachidonic acid was demonstrated using metabolic labeling, mass measurements of arachidonic acid, and measurement of PGI2. The decrease was not due to a changing pool of arachidonic acid, and mass measurements showed no depletion of arachidonic acid. Release from each phospholipid and from each phospholipid class decreased with confluence. Conversion of confluent cells to the proliferative phenotype by mechanical wounding of the monolayer caused increased release of arachidonic acid. Potential mechanisms for these changes were investigated using assays of phospholipase activity. Phospholipase A2 activity changed in concert with the alteration in release, a consequence of changes in phosphorylation of the enzyme. The increased release of arachidonic acid from preconfluent, actively dividing cells may have important physiologic implications and may help elucidate mechanisms regulating release of arachidonic acid.

Authors

R E Whatley, K Satoh, G A Zimmerman, T M McIntyre, S M Prescott

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Citations to this article (37)

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E Bik, L Mateuszuk, J Orleanska, M Baranska, S Chlopicki, K Majzner
International journal of molecular sciences 2021
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K Majzner, S Chlopicki, M Baranska
Journal of Biophotonics 2015
Arachidonic acid induces brain endothelial cell apoptosis via p38-MAPK and intracellular calcium signaling
J Evans, YS Ko, W Mata, M Saquib, J Eldridge, A Cohen-Gadol, HA Leaver, S Wang, MT Rizzo
Microvascular Research 2014
Arachidonoyl-phosphatidylcholine oscillates during the cell cycle and counteracts proliferation by suppressing Akt membrane binding
A Koeberle, H Shindou, SC Koeberle, SA Laufer, T Shimizu, O Werz
Proceedings of the National Academy of Sciences 2013
A VE-cadherin–PAR3–α-catenin complex regulates the Golgi localization and activity of cytosolic phospholipase A 2 α in endothelial cells
AF Odell, M Hollstein, S Ponnambalam, JH Walker, KE Mostov
Molecular biology of the cell 2012
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E Kostovski, AE Dahm, N Iversen, N Hjeltnes, B Østerud, PM Sandset, PO Iversen
Blood Coagulation & Fibrinolysis 2011
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CC Leslie, TA Gangelhoff, MH Gelb
Biochimie 2010
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E Regan-Klapisz, V Krouwer, M Langelaar-Makkinje, L Nallan, M Gelb, H Gerritsen, AJ Verkleij, JA Post, V Malhotra
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American Journal of Physiology - Regulatory, Integrative and Comparative Physiology 2007
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Molecular biology of the cell 2005
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S Antoniotti, AF Pla, S Pregnolato, A Mottola, D Lovisolo, L Munaron
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Nuclear localisation of cytosolic phospholipase A2-α in the EA.hy.926 human endothelial cell line is proliferation dependent and modulated by phosphorylation
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Calcium influx, arachidonic acid,and control of endothelialcell proliferation
AF Pla, L Munaron
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A combination of lactacystin and 12-O-tetradecanoylphorbol-13-acetate enhances the release of arachidonic acid from cells in cultures: release is reduced in confluent and serum deprived cells
L Levine
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KE Rys-Sikora, RL Konger, JW Schoggins, R Malaviya, AP Pentland
American journal of physiology. Cell physiology 2000
1H MRS detects polyunsaturated fatty acid accumulation during gene therapy of glioma: Implications for the in vivo detection of apoptosis
JM Hakumäki, H Poptani, AM Sandmair, S Ylä-Herttuala, RA Kauppinen
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Protein kinase C inhibitors stimulate arachidonic and docosahexaenoic acids release from uterine stromal cells through a Ca2+-independent pathway
H Birbes, JF Pageaux, JM Fayard, M Lagarde, C Laugier
FEBS Letters 1998
Tissue sources of cytochrome P450 4A and 20-HETE synthesis in rabbit lungs
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Lipid composition of cultured endothelial cells in relation to their growth
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Development of a Whole Cell High Throughput Screen for Muscarinic Receptor Agonists
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Proliferation-dependent changes in arachidonic acid mobilization from phospholipids of 3T6 fibroblasts
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Pflügers Archiv - European Journal of Physiology 1996
Binding and internalization of extracellular type-I phospholipase A2 in uterine stromal cells
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Biochemical Journal 1996
The level of pancreatic PLA2 receptor is closely associated with the proliferative state of rat uterine stromal cells
C Tessier, GP Rossini, JF Pageaux, H Cohen, M Lagarde, C Laugier, JM Fayard
FEBS Letters 1996
Reactive Glia Express Cytosolic Phospholipase A2 After Transient Global Forebrain Ischemia in the Rat
JA Clemens, DT Stephenson, EB Smalstig, EF Roberts, EM Johnstone, JD Sharp, SP Little, RM Kramer
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1996
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Amplification of arachidonic acid metabolism in rat liver cells (the C-9 cell-line) by tosyl-l-phenylalanine chloromethyl ketone and phenylmethyl-sulfonyl fluoride
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