dc.contributorUniversidade Federal do Rio de Janeiro (UFRJ)
dc.contributorInsitituto Fed Educ Ciencia & Tecnol Rio de Janei
dc.contributorUniversidade Federal de São Paulo (UNIFESP)
dc.creatorRezende, Daniele Campos
dc.creatorPoças, Elisa Suzana Carneiro
dc.creatorMuzi-Filho, Humberto
dc.creatorCunha, Valeria do Monti Nascimento
dc.creatorCaricati-Neto, Afonso [UNIFESP]
dc.creatorJurkiewicz, Aron [UNIFESP]
dc.creatorNoel, Francois
dc.creatorQuintas, Luis Eduardo Menezes
dc.date.accessioned2016-01-24T14:31:50Z
dc.date.available2016-01-24T14:31:50Z
dc.date.created2016-01-24T14:31:50Z
dc.date.issued2013-06-01
dc.identifierJournal of Physiology and Biochemistry. Pamplona: Servicio Publicaciones Universidad Navarra, v. 69, n. 2, p. 207-214, 2013.
dc.identifier1138-7548
dc.identifierhttps://repositorio.unifesp.br/handle/11600/36385
dc.identifier10.1007/s13105-012-0203-x
dc.identifierWOS:000318510700005
dc.description.abstractThe effect of long-lasting in vivo restriction of nitric oxide (NO) bioavailability on cardiac and renal P-type ATPases critical for intracellular ion homeostasis is controversial. Previous work has shown in eNOS knockout (eNOS(-/-)) mice hearts that Na+/K+- and Ca2+-ATPase activities were depressed but the underlying mechanisms are still unclear. the goal of this study was to characterize potential alterations responsible for impaired enzyme activity in eNOS(-/-) mice. Na+/K+-ATPase activity from crude preparations of adult male eNOS(-/-) mice hearts and kidneys was reduced compared with wild-type animals (32 %, p < 0.05 and 16 %, p < 0.0001, respectively). Immunoblot analysis showed that although the expression of the predominant (or exclusive, for the kidney) Na+/K+-ATPase alpha 1 isoform was not significantly changed, there was an important downregulation of the less abundant alpha 2 isoform in the heart (57 %, p < 0.0001). in addition, although cardiac Ca2+-ATPase activity was unaltered, the expression of sarco/endoplasmic reticulum Ca2+-ATPase 2 protein in eNOS(-/-) mice was very high (290 % compared with wild-type animals, p < 0.0001) without any significant change in phospholamban expression. Consistent with these findings, the content of cardiac and renal free sulfhydryl groups, essential for the catalytic function of such ATPases, was decreased (23 %, p < 0.01 and 35 %, p < 0.05, respectively). Altogether, the present results suggest that the absence of eNOS promotes a compartmentalized altered redox balance that affects the activity and expression of ion transport ATPases.
dc.languageeng
dc.publisherServicio Publicaciones Universidad Navarra
dc.relationJournal of Physiology and Biochemistry
dc.rightsAcesso restrito
dc.subjecteNOS knockout mice
dc.subjectNa+/K+-ATPase
dc.subjectCa2+-ATPase
dc.subjectOxidative stress
dc.subjectNitric oxide
dc.titleMechanisms associated to impaired activity of cardiac P-type ATPases in endothelial nitric oxide synthase knockout mice
dc.typeArtigo


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