Cytochrome P450-Dependent Eicosapentaenoic Acid Metabolites Are Novel BK Channel Activators

Author:

Lauterbach Birgit1,Barbosa-Sicard Eduardo1,Wang Mong-Heng1,Honeck Horst1,Kärgel Eva1,Theuer Jürgen1,Schwartzman Michal L.1,Haller Hermann1,Luft Friedrich C.1,Gollasch Maik1,Schunck Wolf-Hagen1

Affiliation:

1. From the Max Delbrück Center for Molecular Medicine and Franz Volhard Clinic HELIOS Kliniken-Berlin, Medical Faculty of the Charité, Humboldt University of Berlin (B.L., E. B.-S., H.H., E.K., J.T., F.C.L., M.G., W.-H.S.); the New York Medical College (M.H.-W., M.L.S.), Valhalla, NY; and the Department of Internal Medicine-Nephrology, Hannover Medical School (H.H.), Hannover, Germany

Abstract

P450-dependent arachidonic acid (AA) metabolites regulate arterial tone by modulating calcium-activated (BK) potassium channels in vascular smooth muscle cells (VSMC). Because eicosapentaenoic acid (EPA) has been reported to improve vascular function, we tested the hypothesis that P450-dependent epoxygenation of EPA produces alternative vasoactive compounds. We synthesized the 5 regioisomeric epoxyeicosattrienoic acids (EETeTr) and examined them for effects on K + currents in rat cerebral artery VSMCs with the patch-clamp technique. 11(R),12(S)-epoxyeicosatrienoic acid (50 nmol/L) was used for comparison and stimulated K + currents 6-fold at +60 mV. However, 17(R),18(S)-EETeTr elicited a more than 14-fold increase. 17(S),18(R)-EET and the remaining four regioisomers were inactive. The effect of 17(R),18(S)-EETeTr was blocked by tetraethylammonium but not by 4-aminopyridine. VSMCs expressed P450s 4A1 and 4A3. Recombinant P450 4A1 hydroxylated EPA at C-19 and C-20 and epoxygenated the 17,18-double bond, yielding the R, S- and S, R-enantiomers in a ratio of 64:36. We conclude that 17(R),18(S)-EETeTr represents a novel, potent activator of BK potassium channels. Furthermore, this metabolite can be directly produced in VSMCs. We suggest that 17(R),18(S)-EETeTr may function as an important hyperpolarizing factor, particularly with EPA-rich diets.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

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