Search results for "bioquimica"

showing 10 items of 49 documents

Volatile Compounds in Citrus Essential Oils: A Comprehensive Review

2019

[EN] The essential oil fraction obtained from the rind of Citrus spp. is rich in chemical compounds of interest for the food and perfume industries, and therefore has been extensively studied during the last decades. In this manuscript, we provide a comprehensive review of the volatile composition of this oil fraction and rind extracts for the 10 most studied Citrus species: C. sinensis (sweet orange), C. reticulata (mandarin), C. paradisi (grapefruit), C. grandis (pummelo), C. limon (lemon), C. medica (citron), C. aurantifolia (lime), C. aurantium (bitter orange), C. bergamia (bergamot orange), and C. junos (yuzu). Forty-nine volatile organic compounds have been reported in all 10 species,…

Leavescitrus essential oilFlowersOrange (colour)Plant ScienceReviewlcsh:Plant cultureSesquiterpene01 natural scienceslaw.inventionBergamot orangechemistry.chemical_compound0404 agricultural biotechnologylawAnalytical methodsBIOQUIMICA Y BIOLOGIA MOLECULARlcsh:SB1-1110volatile compoundsEssential oilCitrus essential oilflowers010401 analytical chemistry04 agricultural and veterinary sciences040401 food scienceRindTerpenoid0104 chemical sciencesHorticulturerindanalytical methodschemistryVolatile compoundsleavesbusinessbusiness.product_ingredientFrontiers in Plant Science
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Serine biosynthesis by photorespiratory and nonphotorespiratory pathways: and interesting interplay with unknown regulatory networks

2013

[EN] Photorespiration is a primary metabolic pathway, which, given its energy costs, has often been viewed as a wasteful process. Despite having reached the consensus that one important function of photorespiration is the removal of toxic metabolite intermediates, other possible functions have emerged, and others could well emerge in the future. As a primary metabolic pathway, photorespiration interacts with other routes; however the nature of these interactions is not well known. One of these interacting pathways could be the biosynthesis of serine, since this amino acid is synthesised through photorespiratory and non-photorespiratory routes. At present, the exact contribution of each rout…

LightCellular respirationCell RespirationGene regulatory networkPlant ScienceBiologyGlyceric AcidsSerinechemistry.chemical_compoundBiosynthesisSerineBIOQUIMICA Y BIOLOGIA MOLECULARGene Regulatory NetworksPhotosynthesisEcology Evolution Behavior and Systematicschemistry.chemical_classificationPhotorespirationGeneral MedicinePlantsGlycolatesAmino acidMetabolic pathwayGlycerate pathwayPhosphorylated pathwaychemistryBiochemistryPhotorespirationGlycolysisMetabolic Networks and PathwaysFunction (biology)Glycolate pathway
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Identification of the phosphoglycerate dehydrogenase isoform EDA9 as the essential gene for embryo and male gametophyte development in Arabidopsis

2013

[EN] Three different pathways of serine (Ser) biosynthesis have been described in plants: the Glycolate pathway, which is part of the Photorespiratory pathway, and 2 non-Photorespiratory pathways, the Glycerate and the Phosphorylated pathways. The Phosphorylated Pathway of Ser Biosynthesis (PPSB) has been known to exist since the 1950s, but its biological relevance was not revealed until quite recently when the last enzyme of the pathway, the Phosphoserine Phosphatase, was functionally characterized. In the associated study1, we characterized a family of genes coding for putatite phosphoglycerate dehydrogenases (PGDH, 3-PGDH, and EDA9), the first enzyme of the PPSB. A metabolomics study usi…

Male gametophyteShort CommunicationArabidopsisPlant ScienceBiologyEmbryo developmentGenes PlantGene Expression Regulation EnzymologicSerinechemistry.chemical_compoundBiosynthesisGene Expression Regulation PlantArabidopsisBIOQUIMICA Y BIOLOGIA MOLECULARSerinePhosphoglycerate dehydrogenasePhosphorylationGenePhosphoglycerate DehydrogenasePhosphoglycerate dehydrogenasePhosphoglycerate kinaseGenes EssentialArabidopsis ProteinsPhosphoserine phosphatasePhosphorylated pathway of serine biosynthesisbiology.organism_classificationBiosynthetic PathwaysIsoenzymeschemistryBiochemistryEssential geneSeedsPollen
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The essential role of the phosphorylated pathway of serine biosynthesis inArabidopsis

2013

[EN] In plants, 3 different pathways of serine biosynthesis have been described: the Glycolate pathway, which is associated with photorespiration, and 2 non-photorespiratory pathways, the Glycerate and the Phosphorylated pathways. The Phosphorylated Pathway of Serine Biosynthesis (PPSB) has been known since the 1950s, but has been studied relatively little, probably because it was considered of minor significance as compared with the Glycolate pathway. In the associated study1 , we described for the first time in plants the in vivo functional characterization of the PPSB, by targeting the phosphoserine phosphatase (PSP1), the last enzyme of the pathway. Following a gain—and loss-of-function…

Male gametophyteShort CommunicationGreen Fluorescent ProteinsArabidopsisPlant ScienceBiologySerinechemistry.chemical_compoundBiosynthesisArabidopsisBIOQUIMICA Y BIOLOGIA MOLECULARSerineGlycolysisPhosphorylationchemistry.chemical_classificationArabidopsis ProteinsPhosphoserine phosphataseMetabolismPhosphorylated pathway of serine biosynthesisbiology.organism_classificationPhosphoric Monoester HydrolasesBiosynthetic PathwaysAmino acidRoot and embryo developmentBiochemistrychemistryMutationPhosphorylationPhosphoserine phosphatasePlant Signaling & Behavior
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Opportunistic Germination Behaviour of Gypsophila (Caryophyllaceae) in Two Priority Habitats from Semi-arid Mediterranean Steppes

2011

Gypsophila tomentosa and G. struthium are closely related species, characteristic of two European priority habitats, salt and gypsum inland steppes, respectively. Germination strategies of the two taxa were investigated in plants from two nearby populations, growing under the same climatic conditions but on different types of soil, and belonging to different plant communities. Their germination patterns were studied at five constant temperatures in darkness: 5oC, 10oC, 15oC, 20oC and 25oC, and the base temperature and the thermal time requirement were calculated. As the distribution area of both species is subjected to a Mediterranean continental climate with significant differences between…

Mediterranean climateGypsophilaAgriculture (General)BOTANICAPlant ScienceHorticultureBiologyPlant conservationS1-972Gypsum habitatsBotanyBIOQUIMICA Y BIOLOGIA MOLECULARPlant propagationPlant propagationSeed dormancyPlant communityForestryEndemicsSD1-669.5Seed germinationbiology.organism_classificationAridGypsophila tormentosaStratification (seeds)Gypsophila struthiumAgronomyGerminationAgronomy and Crop Science
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Biocompatibility and internalization assessment of bare and functionalised mesoporous silica nanoparticles

2021

[EN] We report herein an evaluation of the effect of several mesoporous silica nanoparticles (MSNs) on the cellular uptake and in vitro cytotoxicity in human cells. Bare MSNs and MSNs functionalized with polyethylene glycol or hyaluronic acid are employed to evaluate uptake efficiency and mechanisms of endocytosis in cancer (MDA-MB-231) and non-cancer (MCF10A) cells. Moreover, changes in viability, cell cycle, oxidative stress, and mitochondrial membrane potential are evaluated. Our results confirm that MSNs are internalized efficiently by human cells and that uptake mechanisms differ for cell types and particles. We also confirm that MSNs are biocompatible materials that do not induce ROS/…

Membrane potentialBiocompatibilityToxicitymedia_common.quotation_subjectMesoporous silica nanoparticlesQUIMICA INORGANICANanoparticleGeneral ChemistryPolyethylene glycolMesoporous silicaCondensed Matter PhysicsEndocytosischemistry.chemical_compoundQUIMICA ORGANICAchemistryMechanics of MaterialsHyaluronic acidBIOQUIMICA Y BIOLOGIA MOLECULARBiophysicsGeneral Materials ScienceBiocompatibilityInternalizationmedia_commonInternalization
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Two copper complexes from two novel naphthalene-sulfonyl-triazole ligands: different nuclearity and different DNA binding and cleavage capabilities.

2013

[EN] Two novel naphthalene-sulfonyl-triazole ligands, 5-amino-N1-(naphthalen-3-ylsulfony1)-1,2,4-triazole (anstrz) and 3,5-diamino-N1-(naphthalen-3-ylsulfony1)-1,2,4-triazole (danstrz), purposely designed to interact with DNA, have been prepared for the first time and then fully characterized by H-1, C-13 NMR and IR spectroscopy, mass spectrometry and elemental analysis. The crystal structures of two copper complexes of these derivatives, i.e. [Cu(anstrz)(4)(NO3)(2)]center dot 4CH(3)OH (1), mononuclear, and [Cu(danstrz)(mu-OAc)(2)](2)center dot 2(danstrz) (OAc = acetato) (2), dinuclear, have been determined by single-crystal X-ray diffraction. In both cases the ligand coordinates in a monod…

Models MolecularDenticity124-Triazole ligandsStereochemistryTriazolePaddle wheel type copper acetate compoundCrystal structureNaphthalenesCrystallography X-RayLigandsBiochemistryInorganic Chemistrychemistry.chemical_compoundX-Ray DiffractionCoordination ComplexesBIOQUIMICA Y BIOLOGIA MOLECULARSulfonesBinding siteDNA CleavageCu(II)-triazole complexesBond cleavageNuclease activitySulfonylchemistry.chemical_classificationSulfonamidesBinding SitesDeoxyribonucleasesChemistryLigandDNATriazolesBinding constantDNA interactionCrystallographyCopperJournal of inorganic biochemistry
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Essential oil variation within and among natural populations of Lavandula latifolia and its relation to their ecological areas

2007

Essential oil yield and composition in seven natural populations of Lavandula latifolia from the eastern Iberian Peninsula were determined by GC/MS. Twenty-eight constituents were identified, accounting for 92.0e95.4% of the total oils. These oils were dominated by the monoterpene fraction and three of them (linalool, cineole and camphor) constituted 79.5e86.9% of the oil from flowers. Essential oil yield in leaves and flowers varied among and within populations, but hierarchic analyses of variance showed that the proportion of variation attributable to individuals was significantly higher than that attributable to population differences. Principal component and cluster analyses allowed thr…

MonoterpenePopulationLavandula latifoliaBiochemistrylaw.inventionTerpenechemistry.chemical_compoundLinaloollawBotanyBIOQUIMICA Y BIOLOGIA MOLECULAReducationEcology Evolution Behavior and SystematicsEssential oileducation.field_of_studyPCALamiaceaebiologyEcologyBioclimatic beltsGenetic analysisSpike lavenderbiology.organism_classificationEssential oil yieldchemistryAHCLamiaceaeOrdinationLavandula latifolia
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Between Scylla and Charibdis: eIF2α kinases as targets for cancer chemotherapy

2011

[EN] The eIF2 alpha kinases integrate translation initiation rates with nutrient availability, thus allowing cells to adapt to nutrient scarcity. Recent evidence has uncovered new functions of these kinases in tumour cell biology, ranging from regulation of cell cycle progression, maintenance of genome stability, control of apoptosis, and cell survival under nutrient stress and hypoxia. Accordingly, active eIF2 alpha kinases modulate the antineoplasic activity of several antitumour drugs, either by exacerbating their cytotoxic effect or by promoting chemoresistance. Understanding of eIF2 alpha kinases molecular roles may provide mechanistic insights into how tumour cells sense and adapt to …

PERKBioquímicaTranslationBiologiaCancer ResearchCancer chemotherapyEukaryotic Initiation Factor-2Antineoplastic AgentsBiologyBioinformaticsNeoplasmsBIOQUIMICA Y BIOLOGIA MOLECULARHumansCytotoxic T cellCell survivalGenome stabilityKinaseNutrient stressPKRGeneral MedicineProtein kinase ROncologyApoptosiseIF2 alpha phosphorylationCancer researchGCN2Clinical and Translational Oncology
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Arabidopsis copper transport protein COPT2 participates in the crosstalk between iron deficiency responses and low phosphate signaling

2013

[EN] Copper and iron are essential micronutrients for most living organisms because they participate as cofactors in biological processes, including respiration, photosynthesis, and oxidative stress protection. In many eukaryotic organisms, including yeast (Saccharomyces cerevisiae) and mammals, copper and iron homeostases are highly interconnected; yet, such interdependence is not well established in higher plants. Here, we propose that COPT2, a high-affinity copper transport protein, functions under copper and iron deficiencies in Arabidopsis (Arabidopsis thaliana). COPT2 is a plasma membrane protein that functions in copper acquisition and distribution. Characterization of the COPT2 expr…

PhysiologyArabidopsisPlant SciencePlant RootsMembranes Transport and BioenergeticsGene Expression Regulation PlantArabidopsisThalianaHomeostasisArabidopsis thalianaSLC31 ProteinsGene-expressionCation Transport ProteinsChlorosisbiologyRevealsIron DeficienciesMetal homeostasisPlantsPlants Genetically ModifiedUp-RegulationTransport proteinPhenotypeBiochemistrySignal TransductionIronRecombinant Fusion ProteinsSaccharomyces cerevisiaechemistry.chemical_elementSaccharomyces cerevisiaeModels BiologicalPhosphatesEthyleneGeneticsmedicineBIOQUIMICA Y BIOLOGIA MOLECULARFamilyIron deficiency (plant disorder)Arabidopsis ProteinsBiological TransportRoot elongationSequence Analysis DNAbiology.organism_classificationmedicine.diseaseCopperPlant LeavesAcquisitionchemistrySeedlingsStarvationMutationCopper deficiencyCopper
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