0000000000214298

AUTHOR

Juan Carbonell

0000-0002-6936-6540

showing 5 related works from this author

Changes in the Level of Peptidase Activities in Pea Ovaries during Senescence and Fruit Set Induced by Gibberellic Acid

1990

The activities and changes in the levels of exopeptidase and endopeptidase activities were characterized in unpollinated ovaries of Pisum sativum L. cv Alaska during senescence and early fruit development induced by gibberellic acid (GA3). Two aminopeptidases and one iminopeptidase were electrophoretically separated. These peptidases were sensitive to inhibitors of sulfhydryl proteases. Carboxypeptidase activity was inhibited by phenylmethyl sulfonyl fluoride. An azocasein-degrading endopeptidase, sensitive to thiol protease inhibitors, was also found. An increase in the specific activity of aminopeptidase during both fruit development and ovary senescence was observed. In contrast, the spe…

SenescenceExopeptidase activityPhysiologyfood and beveragesPlant ScienceBiologyExopeptidaseCarboxypeptidaseEndopeptidaseCarboxypeptidase activityEndopeptidase activityBiochemistryGeneticsbiology.proteinGibberellinPlant Physiology
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Biochemical quantitation of the eIF5A hypusination in Arabidopsis thaliana uncovers ABA-dependent regulation.

2014

The eukaryotic translation elongation factor eIF5A is the only protein known to contain the unusual amino acid hypusine which is essential for its biological activity. This post-translational modification is achieved by the sequential action of the enzymes deoxyhypusine synthase (DHS) and deoxyhypusine hydroxylase (DOHH). The crucial molecular function of eIF5A during translation has been recently elucidated in yeast and it is expected to be fully conserved in every eukaryotic cell, however the functional description of this pathway in plants is still sparse. The genetic approaches with transgenic plants for either eIF5A overexpression or antisense have revealed some activities related to t…

2D-electrophoresis4SpermidinePlant ScienceBiologylcsh:Plant cultureabscisic acidchemistry.chemical_compoundHypusineAbscisic acidEukaryotic translationabscisic acid5hypusine2spermidineDeoxyhypusine synthaseArabidopsis thalianaeIF5A3lcsh:SB1-1110Original Research ArticleeIF5AHypusine2D-electrophoresisspermidine1Translation (biology)Deoxyhypusine Hydroxylasebiology.organism_classificationhypusineElongation factorBiochemistrychemistrybiology.proteinEIF5AEIF5AFrontiers in plant science
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Diverse stress signals activate the C1 subgroup MAP kinases ofArabidopsis

2007

AbstractMitogen-activated protein kinase (MAPK) cascades play an important role in mediating stress responses in plants. In Arabidopsis, 20 MAPKs have been identified and classified into four major groups (A–D). Little is known about the role of group C MAPKs. We have studied the activation of Arabidopsis subgroup C1 MAPKs (AtMPK1/AtMPK2) in response to mechanical injury. An increase in their kinase activity was detected in response to wounding that was blocked by cycloheximide. Jasmonic acid (JA) activated AtMPK1/AtMPK2 in the absence of wounding. Wound and JA-induction of AtMPK1/2 kinase activity was not prevented in the JA-insensitive coi1 mutant. Other stress signals, such as abscisic a…

AcclimatizationArabidopsisBiophysicsBiochemistryGene Expression Regulation Enzymologicchemistry.chemical_compoundGene Expression Regulation PlantStructural BiologyArabidopsisGeneticsASK1Kinase activityProtein kinase AMolecular BiologyJasmonic acidMAP kinase kinase kinasebiologyArabidopsis ProteinsKinaseJasmonic acidWoundHydrogen PeroxideCell Biologybiology.organism_classificationBiochemistrychemistryMitogen-activated protein kinasebiology.proteinMAP kinaseStress MechanicalMitogen-Activated Protein KinasesAbscisic AcidSignal TransductionFEBS Letters
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Transcriptional response of Erwinia amylovora to copper shock: in vivo role of the copA gene

2017

Fire blight is a devastating plant disease caused by the bacterium Erwinia amylovora, and its control is frequently based on the use of copper-based compounds whose mechanisms of action are not well known. Consequently, in this article, we investigate the response of E. amylovora to copper shock by a whole-genome microarray approach. Transcriptional analyses showed that, in the presence of copper, 23 genes were increased in expression; these genes were classified mainly into the transport and stress functional categories. Among them, the copA gene was strongly induced and regulated in a finely tuned manner by copper. Mutation of copA, soxS, arcB, yjcE, ygcF, yhhQ, galF and EAM_3469 genes re…

0301 basic medicinechemistry.chemical_classificationReactive oxygen speciesbiology030106 microbiologyCopper toxicitySoil SciencePlant ScienceErwiniamedicine.diseasebiology.organism_classificationPlant diseaseMicrobiologySOXSComplementation03 medical and health scienceschemistrymedicineEffluxAgronomy and Crop ScienceMolecular BiologyGeneMolecular Plant Pathology
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Perturbation of spermine synthase Gene Expression and Transcript Profiling Provide New Insights on the Role of the Tetraamine Spermine in Arabidopsis…

2011

The role of the tetraamine spermine in plant defense against pathogens was investigated by using the Arabidopsis (Arabidopsis thaliana)-Pseudomonas viridiflava pathosystem. The effects of perturbations of plant spermine levels on susceptibility to bacterial infection were evaluated in transgenic plants (35S::spermine synthase [SPMS]) that overexpressed the SPMS gene and accumulated spermine, as well as in spms mutants with low spermine levels. The former exhibited higher resistance to P. viridiflava than wild-type plants, while the latter were more susceptible. Exogenous supply of spermine to wild-type plants also increased disease resistance. Increased resistance provided by spermine was p…

Time FactorsTranscription GeneticGene Expression ProfilingSpermine SynthaseArabidopsisColony Count MicrobialGenes PlantPlants Genetically ModifiedGene Expression Regulation EnzymologicGene Expression Regulation PlantPseudomonasMutationPlants Interacting with Other OrganismsSpermineRNA MessengerReactive Oxygen SpeciesOxidation-Reduction
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