Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/66804

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Campo DCValorIdioma
dc.contributor.authorMartins, Vivianapor
dc.contributor.authorGerós, Hernânipor
dc.date.accessioned2020-09-07T09:01:41Z-
dc.date.issued2020-08-07-
dc.identifier.citationMartins, Viviana; Gerós, Hernâni, The grapevine CAX-interacting protein VvCXIP4 is exported from the nucleus to activate the tonoplast Ca2+/H+ exchanger VvCAX3. Planta, 252(3), 35, 2020por
dc.identifier.issn0032-0935por
dc.identifier.urihttps://hdl.handle.net/1822/66804-
dc.description.abstractVacuolar cation/H+ exchangers (CAXs) have long been recognized as housekeeping components in cellular Ca2+ and trace metal homeostasis, being involved in a range of key cellular and physiological processes. However, the mechanisms that drive functional activation of the transporters are largely unknown. In the present study, we investigated the function of a putative grapevine CAX-interacting protein, VvCXIP4, by testing its ability to activate VvCAX3, previously characterized as a tonoplast-localized Ca2+/H+ exchanger. VvCAX3 contains an autoinhibitory domain that drives inactivation of the transporter and thus, is incapable of suppressing the Ca2+-hypersensitive phenotype of the S. cerevisiae mutant K667. In this study, the co-expression of VvCXIP4 and VvCAX3 in this strain efficiently rescued its growth defect at high Ca2+ levels. Flow cytometry experiments showed that yeast harboring both proteins effectively accumulated higher Ca2+ levels than cells expressing each of the proteins separately. Bimolecular fluorescence complementation (BiFC) assays allowed visualization of the direct interaction between the proteins in tobacco plants and in yeast, and also showed the self-interaction of VvCAX3 but not of VvCXIP4. Subcellular localization studies showed that, despite being primarily localized to the nucleus, VvCXIP4 is able to move to other cell compartments upon a Ca2+ stimulus, becoming prone to interaction with the tonoplast-localized VvCAX3. qPCR analysis showed that both genes are more expressed in grapevine stems and leaves, followed by the roots, and that the steady-state transcript levels were higher in the pulp than in the skin of grape berries. Also, both VvCXIP4 and VvCAX3 were upregulated by Ca2+ and Na+, indicating they share common regulatory mechanisms. However, VvCXIP4 was also upregulated by Li+, Cu2+ and Mn2+, and its expression increased steadily throughout grape berry development, contrary to VvCAX3, suggesting additional physiological roles for VvCXIP4, including the regulation of VvCAXs not yet functionally characterized. The main novelty of the present study was the demonstration of physical interaction between CXIP and CAX proteins from a woody plant model by BiFC assays, demonstrating the intracellular mobilization of CXIPs in response to Ca2+.por
dc.description.sponsorshipThis work was supported by the “Contrato-Programa” UIDB/04050/2020 funded by national funds through the FCT I.P. The work was also supported by FCT and European Funds (FEDER/ POCI/COMPETE2020) through the research projects [PTDC/BIAFBT/30341/2017; POCI-01–0145-FEDER-030341], [PTDC/BIAFBT/28165/2017; POCI-01–0145-FEDER-028165], and [SFRH/ BPD/107905/2015] to V.M.por
dc.language.isoengpor
dc.publisherSpringerpor
dc.relationUIDB/04050/2020por
dc.relationPTDC/BIAFBT/30341/2017por
dc.relationPOCI-01–0145-FEDER-030341por
dc.relationPTDC/BIAFBT/28165/2017por
dc.relationPOCI-01–0145-FEDER-028165por
dc.relationSFRH/ BPD/107905/2015por
dc.rightsrestrictedAccesspor
dc.subjectBimolecular fluorescence complementationpor
dc.subjectCalcium transportpor
dc.subjectCAX-interacting proteinspor
dc.subjectHeterologous expressionpor
dc.subjectS. cerevisiae K667por
dc.subjectVitis viniferapor
dc.subjectSpor
dc.subjectcerevisiaeK667por
dc.titleThe grapevine CAX-interacting protein VvCXIP4 is exported from the nucleus to activate the tonoplast Ca2+/H+ exchanger VvCAX3por
dc.typearticle-
dc.peerreviewedyespor
dc.relation.publisherversionhttps://link.springer.com/journal/425por
dc.commentsCEB53854por
oaire.citationIssue3por
oaire.citationVolume252por
dc.date.updated2020-08-22T20:09:10Z-
dc.identifier.eissn1432-2048por
dc.identifier.doi10.1007/s00425-020-03442-xpor
dc.date.embargo10000-01-01-
dc.identifier.pmid32767128por
dc.description.publicationversioninfo:eu-repo/semantics/publishedVersion-
dc.subject.wosScience & Technologypor
sdum.journalPlantapor
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