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Experimental & Molecular Medicine ; : e67-2013.
Article Dans Anglais | WPRIM | ID: wpr-83998

Résumé

Serotonin (5-hydroxytryptamine (5-HT)) is a neurotransmitter that regulates a variety of functions in the nervous, gastrointestinal and cardiovascular systems. Despite such importance, 5-HT signaling pathways are not entirely clear. We demonstrated previously that 4-aminopyridine (4-AP)-sensitive voltage-gated K+ (Kv) channels determine the resting membrane potential of arterial smooth muscle cells and that the Kv channels are inhibited by 5-HT, which depolarizes the membranes. Therefore, we hypothesized that 5-HT contracts arteries by inhibiting Kv channels. Here we studied 5-HT signaling and the detailed role of Kv currents in rat mesenteric arteries using patch-clamp and isometric tension measurements. Our data showed that inhibiting 4-AP-sensitive Kv channels contracted arterial rings, whereas inhibiting Ca2+-activated K+, inward rectifier K+ and ATP-sensitive K+ channels had little effect on arterial contraction, indicating a central role of Kv channels in the regulation of resting arterial tone. 5-HT-induced arterial contraction decreased significantly in the presence of high KCl or the voltage-gated Ca2+ channel (VGCC) inhibitor nifedipine, indicating that membrane depolarization and the consequent activation of VGCCs mediate the 5-HT-induced vasoconstriction. The effects of 5-HT on Kv currents and arterial contraction were markedly prevented by the 5-HT2A receptor antagonists ketanserin and spiperone. Consistently, alpha-methyl 5-HT, a 5-HT2 receptor agonist, mimicked the 5-HT action on Kv channels. Pretreatment with a Src tyrosine kinase inhibitor, 4-amino-5-(4-chlorophenyl)-7-(t-butyl)pyrazolo[3,4-d]pyrimidine, prevented both the 5-HT-mediated vasoconstriction and Kv current inhibition. Our data suggest that 4-AP-sensitive Kv channels are the primary regulator of the resting tone in rat mesenteric arteries. 5-HT constricts the arteries by inhibiting Kv channels via the 5-HT2A receptor and Src tyrosine kinase pathway.


Sujets)
Animaux , Mâle , Rats , 4-Amino-pyridine/pharmacologie , Potentiels d'action , Inhibiteurs des canaux calciques/pharmacologie , Canaux calciques/métabolisme , Cellules cultivées , Kétansérine/pharmacologie , Artères mésentériques/effets des médicaments et des substances chimiques , Contraction musculaire , Muscles lisses vasculaires/cytologie , Myocytes du muscle lisse/effets des médicaments et des substances chimiques , Nifédipine/pharmacologie , Inhibiteurs des canaux potassiques/pharmacologie , Canaux potassiques voltage-dépendants/antagonistes et inhibiteurs , Inhibiteurs de protéines kinases/pharmacologie , Rat Sprague-Dawley , Récepteur de la sérotonine de type 5-HT2A/métabolisme , Sérotonine/pharmacologie , Antagonistes des récepteurs 5-HT2 de la sérotonine/pharmacologie , Spipérone/pharmacologie , Vasoconstriction , src-Family kinases/antagonistes et inhibiteurs
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