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dc.creatorAntón-Tay, Fernando
dc.creatorRamírez, Gerardo
dc.creatorMartínez, Isabel
dc.creatorBenítez-King, Gloria
dc.date.accessioned2017-06-30T03:42:23Z
dc.date.available2017-06-30T03:42:23Z
dc.date.issued1998es_ES
dc.identifier2140es_ES
dc.identifier.issn0364-3190es_ES
dc.identifier.urihttp://repositorio.inprf.gob.mx/handle/123456789/6795
dc.identifier.urihttps://doi.org/10.1023/A:1022474402458es_ES
dc.description.abstractIt has been shown that melatonin through binding to calmodulin acts both in vitro and in vivo as a potent calmodulin antagonist. It is known that calmodulin antagonists both bind to the hydrophobic domain of Ca2+ activated calmodulin, and inhibit protein kinase C activity. In this work we explored the effects of melatonin on Ca2+ dependent protein kinase C activity in vitro using both a pure commercial rat brain protein kinase C, and a partially purified enzyme from MDCK and N1E-115 cell homogenates. The results showed that melatonin directly activated protein kinase C with a half stimulatory concentration of 1 nM. In addition the hormone augmented by 30% the phorbol ester stimulated protein kinase C activity and increased [3H] PDBu binding to the kinase. In contrast, calmodulin antagonists (500 _M) and protein kinase C inhibitors (100 _M) abolished the enzyme activity. Melatonin analogs tested were ineffective in increasing either protein kinase C activity or [3H] PDBu binding. Moreover, the hormone stimulated protein kinase C autophosphorylation directly and in the presence of phorbol ester and phosphatidylserine. The results show that besides the melatonin binding to calmodulin, the hormone also interacts with protein kinase C only in the presence of Ca2+. They also suggest that the melatonin mechanism of action may involve interactions with other intracellular hydrophobic and Ca2+ dependent proteins.es_ES
dc.language.isoenges_ES
dc.relation23 (5) 601-606 p.es_ES
dc.relationversión del editores_ES
dc.rightsacceso cerradoes_ES
dc.titleIn Vitro Stimulation of Protein Kinase C by Melatonines_ES
dc.typearticlees_ES
dc.contributor.affiliationUniversidad Autonoma Metropolitana - Iztapalapa, Dpto. de Biología de la Reproducción CBS.es_ES
dc.contributor.emailfat@xanum.uam.mxes_ES
dc.relation.jnabreviadoNEUROCHEM RESes_ES
dc.relation.journalNeurochemical researches_ES
dc.identifier.placeNew York, NYes_ES
dc.date.published1998es_ES
dc.identifier.organizacionInstituto Mexicano de Psiquiatríaes_ES
dc.identifier.eissn1573-6903es_ES
dc.subject.kwMelatoninaes_ES
dc.subject.kwCalcioes_ES
dc.subject.kwMDCKes_ES
dc.subject.kwN1E-115es_ES
dc.subject.kwAutofosforilaciónes_ES
dc.subject.kwProteína quinasa Ces_ES
dc.subject.kwMecanismo de acciónes_ES
dc.subject.koMelatonines_ES
dc.subject.koProtein Kinase Ces_ES
dc.subject.koCalciumes_ES
dc.subject.koMDCKes_ES
dc.subject.koN1E-115es_ES
dc.subject.koAutophosphorylationes_ES
dc.subject.koMechanism of actiones_ES


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