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PMID: 9927620 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Inhibition of cardiac L-type calcium channels by epoxyeicosatrienoic acids.

Molecular pharmacology ·Vol. 55 ·No. 2 ·1999-02-00 ·Pages 288-95

Chen J, Capdevila JH, Zeldin DC, Rosenberg RL

Abstract

Epoxyeicosatrienoic acids (EETs), products of the cytochrome P-450 monooxygenase metabolism of arachidonic acid, can regulate the activity of ion channels. We examined the effects of EETs on cardiac L-type Ca2+ channels that play important roles in regulating cardiac contractility, controlling heart rate, and mediating slow conduction in normal nodal cells and ischemic myocardium. Our experimental approach was to reconstitute porcine L-type Ca2+ channels into planar lipid bilayers where we could control the aqueous and lipid environments of the channels and the regulatory pathways that change channel properties. We found that 20 to 125 nM EETs inhibited the open probability of reconstituted L-type Ca2+ channels, accelerated the inactivation of the channels, and reduced the unitary current amplitude of open channels. There was no selectivity among different EET regioisomers or stereoisomers. When 11,12-EET was esterified to the sn-2 position of phosphatidylcholine, restricting it to the hydrophobic phase of the planar lipid bilayer, the reconstituted channels were similarly inhibited, suggesting that the EET interacts directly with Ca2+ channels through the lipid phase. The inhibitory effects of EET persisted in the presence of microcystin, an inhibitor of protein phosphatases 1 and 2A, suggesting that dephosphorylation was not the mechanism through which these eicosanoids down-regulate channel activity. This inhibition may be an important protective mechanism in the setting of cardiac ischemia where arachidonic acid levels are dramatically increased and EETs have been shown to manifest preconditioning-like effects.

MeSH Terms
8,11,14-Eicosatrienoic Acid/analogs & derivatives,chemistry,pharmacology Animals Calcium Channels/drug effects,metabolism Dose-Response Relationship, Drug Electric Conductivity Enzyme Inhibitors/pharmacology Lipid Bilayers/metabolism Membrane Potentials/drug effects Microcystins Myocardium/metabolism Peptides, Cyclic/pharmacology Phosphatidylcholines/chemistry,pharmacology Phosphoprotein Phosphatases/antagonists & inhibitors Swine
Chemicals
Calcium Channels Enzyme Inhibitors Lipid Bilayers Microcystins Peptides, Cyclic Phosphatidylcholines 11,12-epoxy-5,8,14-eicosatrienoic acid microcystin Phosphoprotein Phosphatases 8,11,14-Eicosatrienoic Acid
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Chen J
Department of Cell and Molecular Physiology, University of North Carolina, Chapel Hill, North Carolina, USA.
Capdevila J H
Zeldin D C
Rosenberg R L
Article Info
Journal
Molecular pharmacology
Abbr.
Mol Pharmacol
ISSN
0026-895X
Published
1999-02-00
Pages
288-95
Language
English
Region
United States
NLM ID
0035623
Subset
IM
Grants
NIGMS NIH HHS · GM37922 · United States
NHLBI NIH HHS · HL27430 · United States
NHLBI NIH HHS · HL49449 · United States
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