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PMID: 8815207 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Effect of isosorbiddinitrate on exogenously expressed slowly activating K+ channels and endogenous K+ channels in Xenopus oocytes.

The Journal of physiology ·Vol. 491 ( Pt 3) ·1996-03-15 ·Pages 735-41

Busch AE, Kopp HG, Waldegger S, Samarzija I, Süssbrich H, Raber G, Kunzelmann K, Ruppersberg JP, Lang F

Abstract

1. The effects of isosorbiddinitrate (ISDN) were tested on membrane currents and resting potential in Xenopus laevis oocytes which were either uninjected or injected with cRNA encoding for K+ channels from three distinct families (slowly activating IsK channels, delayed-rectifying Kv1.1 or inwardly rectifying IRK1 K+ channels). 2. In uninjected oocytes ISDN (1 mM) resulted in a decrease of the holding current at potentials more positive than -100 mV and in an increase at potentials below -100 mV. Increasing extracellular K+ to 100 mM shifted the reversal potential for ISDN-mediated effects to approximately -12 mV, suggesting an inhibition of a K+ conductance by ISDN. 3. In current clamp studies ISDN (1 mM) and Ba2+ (3 mM) depolarized cell membrane. ISDN and Ba2+ had no additive effects on membrane potential when applied simultaneously. In voltage clamp studies, corresponding results were observed for the effects of ISDN and Ba2+ on the holding current with an apparent K(m) of 0.21 and 0.08 mM, respectively. 4. In contrast to ISDN, the nitric oxide (NO) donors isosorbidmononitrate (ISMN) and S-nitrosocysteine (SNOC) had no effects on the holding currents in Xenopus oocytes. Moreover, the guanylate inhibitor LY 83583 did not affect ISDN-mediated holding current alterations, suggesting that ISDN acts independently of the second messenger NO. 5. ISDN inhibited exogenously expressed IsK channels with an apparent K(m) of 0.15 mM, but at 1 mM only weakly inhibited Kv1.1 and IRK1 channels. 6. It is concluded that ISDN inhibits an endogenous K+ conductance in Xenopus oocytes with a similar potency to that shown by expressed IsK channels. These effects are independent of the second messenger NO.

MeSH Terms
Aminoquinolines/pharmacology Animals Barium/pharmacology Cysteine/analogs & derivatives,pharmacology Electrophysiology Enzyme Inhibitors/pharmacology Guanylate Cyclase/antagonists & inhibitors Isosorbide Dinitrate/analogs & derivatives,pharmacology Kinetics Oocytes/drug effects,metabolism Patch-Clamp Techniques Potassium Channels/drug effects,genetics,metabolism RNA, Complementary/biosynthesis Rats S-Nitrosothiols Vasodilator Agents/pharmacology Xenopus laevis
Chemicals
Aminoquinolines Enzyme Inhibitors Potassium Channels RNA, Complementary S-Nitrosothiols Vasodilator Agents Barium 6-anilino-5,8-quinolinedione S-nitrosocysteine Guanylate Cyclase Isosorbide Dinitrate Cysteine isosorbide-5-mononitrate
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Busch A E
Institute of Physiology, Eberhard-Karls-Universität Tübingen, Germany.
Kopp H G
Waldegger S
Samarzija I
Süssbrich H
Raber G
Kunzelmann K
Ruppersberg J P
Lang F
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Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1996-03-15
Pages
735-41
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1158814
Subset
IM
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