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Nitric oxide blocks hKv1.5 channels by S-nitrosylation and by a cyclic GMP-dependent mechanism

dc.contributor.authorNúñez Fernández, Lucía
dc.contributor.authorVaquero González, Luis Miguel
dc.contributor.authorGómez García, Ricardo
dc.contributor.authorCaballero Collado, Ricardo
dc.contributor.authorMateos Cáceres, Petra
dc.contributor.authorMacaya Miguel, Carlos
dc.contributor.authorIriepa Canalda, Isabel
dc.contributor.authorGálvez Ruano, Enrique
dc.contributor.authorLópez Farre, Antonio José
dc.contributor.authorTamargo Menéndez, Juan
dc.contributor.authorDelpón Mosquera, María Eva
dc.date.accessioned2024-01-08T09:12:28Z
dc.date.available2024-01-08T09:12:28Z
dc.date.issued2006
dc.description.abstractAbstract Objective: This study was undertaken to analyze whether nitric oxide (NO) modulates the human potassium channel hKv1.5, which generates the ultrarapid delayed rectifier current (IKur) that determines the height and duration of atrial action potentials. Methods: Currents were recorded using the whole-cell patch-clamp in Ltk- cells expressing hKv1.5 channels. Results: The NO donors (+/-)-S-Nitroso-N-acetylpenicillamine (SNAP) and sodium nitroprusside, a NO solution, and l-Arginine inhibited hKv1.5 currents in a concentration-dependent manner. The NO concentration in the cell chamber was monitored using a sensor, and the IC50 for NO-induced hKv1.5 block was 340+/-70 nM. SNAP also inhibited the IKur recorded in mouse ventricular myocytes. The NO effects were partially mediated by the activation of the soluble guanylate cyclase (sGC)/cGMP/cGMP-dependent protein kinase (PKG) pathway. The biotin-switch assay demonstrated the presence of S-nitrosylated cysteines (Cys) on the hKv1.5 protein in SNAP-treated cells. Molecular modeling of hKv1.5 channel structure suggests that S-nitrosylation of Cys331 (segment 2, S2) and Cys346 (S2) would be stabilized by hydrogen bridge bonds with Ile262 (S1) and Arg342 (S2), respectively. Conclusions: NO inhibits the hKv1.5 current by a cGMP-dependent mechanism and by the S-nitrosylation of the hKv1.5 protein, an effect that contributes to shaping the human atrial action potentials.
dc.description.departmentDepto. de Farmacología y Toxicología
dc.description.facultyFac. de Medicina
dc.description.refereedTRUE
dc.description.sponsorshipFundación Mutua Madrileña
dc.description.sponsorshipRed HERACLES
dc.description.statuspub
dc.identifier.citationNúñez L, Vaquero M, Gómez R, Caballero R, Mateos-Cáceres P, Macaya C, Iriepa I, Gálvez E, López-Farré A, Tamargo J, Delpón E. Nitric oxide blocks hKv1.5 channels by S-nitrosylation and by a cyclic GMP-dependent mechanism. Cardiovasc Res. 2006 Oct 1;72(1):80-9. doi: 10.1016/j.cardiores.2006.06.021. Epub 2006 Jun 27. PMID: 16876149.
dc.identifier.doi10.1016/j.cardiores.2006.06.021
dc.identifier.issn1755-3245
dc.identifier.relatedurlhttps://doi.org/10.1016/j.cardiores.2006.06.021
dc.identifier.urihttps://hdl.handle.net/20.500.14352/91776
dc.issue.number1
dc.journal.titleCardiovascular Research
dc.language.isoeng
dc.page.final89
dc.page.initial80
dc.publisherOxford University Press
dc.relation.projectIDSAF2005-04609
dc.relation.projectIDG03/045
dc.rights.accessRightsrestricted access
dc.subject.cdu615.01/.03
dc.subject.keywordNitricoxide
dc.subject.keywordK-channels
dc.subject.keywordIonchannels
dc.subject.keywordRepolarization
dc.subject.keywordPharmacology
dc.subject.ucmFarmacología (Medicina)
dc.subject.unesco3209 Farmacología
dc.titleNitric oxide blocks hKv1.5 channels by S-nitrosylation and by a cyclic GMP-dependent mechanism
dc.typejournal article
dc.type.hasVersionVoR
dc.volume.number72
dspace.entity.typePublication
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