Search results for "Plant Protein"

showing 10 items of 253 documents

Stevia rebaudiana Bertoni as a natural antioxidant/antimicrobial for high pressure processed fruit extract: Processing parameter optimization

2013

Response surface methodology was used to evaluate the optimal high pressure processing treatment (300-500 MPa, 5-15 min) combined with Stevia rebaudiana (Stevia) addition (0-2.5% (w/v)) to guarantee food safety while maintaining maximum retention of nutritional properties. A fruit extract matrix was selected and Listeria monocytogenes inactivation was followed from the food safety point of view while polyphenoloxidase (PPO) and peroxidase (POD) activities, total phenolic content (TPC) and antioxidant capacity (TEAC and ORAC) were studied from the food quality point of view. A combination of treatments achieved higher levels of inactivation of L. monocytogenes and of the oxidative enzymes, s…

Antioxidantmedicine.medical_treatmentAntioxidantsAnalytical ChemistryPascalizationFood PreservationOxidative enzymeBotanymedicineSteviaFood scienceResponse surface methodologyPeroxidasePlant ProteinsMangiferabiologyCaricaPlant ExtractsChemistryGeneral Medicinebiology.organism_classificationListeria monocytogenesSteviaAnti-Bacterial AgentsStevia rebaudianaPoint of deliveryFruitFood PreservativesFood qualityCatechol OxidaseCitrus sinensisFood ScienceFood Chemistry
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Energetic coupling between plastids and mitochondria drives CO2 assimilation in diatoms.

2015

International audience; Diatoms are one of the most ecologically successful classes of photosynthetic marine eukaryotes in the contemporary oceans. Over the past 30 million years, they have helped to moderate Earth's climate by absorbing carbon dioxide from the atmosphere, sequestering it via the biological carbon pump and ultimately burying organic carbon in the lithosphere. The proportion of planetary primary production by diatoms in the modern oceans is roughly equivalent to that of terrestrial rainforests. In photosynthesis, the efficient conversion of carbon dioxide into organic matter requires a tight control of the ATP/NADPH ratio which, in other photosynthetic organisms, relies prin…

Aquatic Organismschemistry.chemical_compoundAdenosine TriphosphateSettore BIO/04 - Fisiologia VegetaleCYCLIC ELECTRON FLOWPlastidsPhotosynthesisPHAEODACTYLUM-TRICORNUTUMPlant Proteinschemistry.chemical_classificationMultidisciplinarymicroalgaeRespirationCarbon fixationEnergetic interactionsProton-Motive ForceMitochondriametabolic mutantPhenotypeATP/NADPH ratioOXYGEN PHOTOREDUCTIONCarbon dioxideOxidoreductasesOxidation-ReductionOceanOceans and SeasElectron flowMarine eukaryotesBiologyPhotosynthesisCHLAMYDOMONAS-REINHARDTIICarbon cycleCarbon CycleMitochondrial ProteinsEnergetic exchangesBotanyOrganic matterEcosystem[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology14. Life underwaterPlastidEcosystemDiatomsChemiosmosisfungiECSCarbon Dioxidechemistry13. Climate actionNADP
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Diversification of CYCLOIDEA-like TCP genes in the basal eudicot families Fumariaceae and Papaveraceae s.str.

2006

CYCLOIDEA-like genes belong to the TCP family of transcriptional regulators and have been shown to control different aspects of shoot development in various angiosperm lineages, including flower monosymmetry in asterids and axillary meristem growth in monocots. Genes related to the CYC gene from ANTIRRHINUM show independent duplications in both asterids and rosids. However, it remains unclear to what extent this affected the evolution of flower symmetry and shoot branching in these and other eudicot lineages. Here, we show that CYC-like genes have also undergone duplications in two related Ranunculales families, Fumariaceae and Papaveraceae s.str. These families exhibit morphological divers…

AquilegiaAsteridsMolecular Sequence DataPlant ScienceFlowersBiologyGenes PlantEvolution MolecularPhylogeneticsPapaveraceaeGene duplicationPapaveraceaeAmino Acid SequenceEcology Evolution Behavior and SystematicsPhylogenyPlant ProteinsGeneticsPhylogenetic treefungiAntirrhinumfood and beveragesGenetic VariationGeneral Medicinebiology.organism_classificationDNA-Binding ProteinsRanunculalesOrgan SpecificityFumariaceaeTranscription FactorsPlant biology (Stuttgart, Germany)
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Novel antimicrobial ultrathin structures of zein/chitosan blends obtained by electrospinning

2009

Abstract This paper describes the formulation, morphology and biocide properties of novel antimicrobial electrospun zein based ultrathin fiber structures. From the results, it was found that the electrospun fibers of zein can turn the material into a new strong antimicrobial ultrathin-structured system due to retention of remnant amounts of trifluoroacetic acid as determined by ATR–FTIR spectroscopy. Unfortunately, this system may be considered to yield very aggressive high acidic media due to release of the strong acid, which causes the antimicrobial behavior. Nevertheless, since biocide properties are more desirable at mild acidic conditions, blending zein with the natural antimicrobial c…

BiocidePolymers and PlasticsOrganic Chemistrytechnology industry and agriculturefood and beveragesmacromolecular substancesElectrospinningChitosanchemistry.chemical_compoundDifferential scanning calorimetrychemistryChemical engineeringPlant proteinNanofiberPolymer chemistryMaterials ChemistryFiberPolymer blendCarbohydrate Polymers
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Human dendritic cells transfected with allergen-DNA stimulate specific immunoglobulin G4 but not specific immunoglobulin E production of autologous B…

2007

Atopic/allergic diseases are characterized by T helper 2 (Th2)-dominated immune responses resulting in immunoglobulin E (IgE) production. DNA-based immunotherapies have been shown to shift the immune response towards Th1 in animal models. In further studies we showed that human dendritic cells (DC) transfected with allergen-DNA are able to stimulate autologous CD4(+) T cells from atopic individuals to produce Th1 instead of Th2 cytokines and to activate interferon-gamma (IFN-gamma)-producing CD8(+) T cells. The aim of this study was to analyse whether DC transfected with allergen-DNA are also able to influence immunoglobulin production of B cells from atopic donors. For this purpose, human …

CD4-Positive T-LymphocytesHypersensitivity ImmediateAllergyImmunologyCD8-Positive T-Lymphocytesmedicine.disease_causeImmunoglobulin ELymphocyte ActivationTransfectionAllergenImmune systemmedicineImmunology and AllergyHumansCells CulturedCell ProliferationPlant ProteinsRhinitisB-LymphocytesCD40biologyTransfectionOriginal ArticlesDendritic CellsAllergensImmunoglobulin ETh1 Cellsmedicine.diseaseCoculture TechniquesImmunoglobulin GImmunologybiology.proteinCytokinesAntibodyCD8T-Lymphocytes Cytotoxic
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Modification of the human allergic immune response by allergen-DNA-transfected dendritic cells in vitro.

2004

Abstract Background Atopic-allergic diseases are characterized by T H 2-dominated immune responses, resulting in IgE production. DNA-based immunotherapies have been shown to shift the immune response toward a T H 1-type response in animal models. Objective The aim of the study was to analyze whether dendritic cells (DCs) transfected with allergen-DNA conjugates are able to stimulate human autologous CD4 + T cells, CD8 + T cells, or both from atopic individuals to produce T H 1 cytokines instead of T H 2 cytokines. Methods For this purpose, human mature DCs from atopic donors were transfected with an adenovirus encoding the allergen Phl p 1. Autologous CD4 + and CD8 + T cells were stimulated…

CD4-Positive T-LymphocytesHypersensitivity Immediatemedicine.medical_treatmentImmunologyGenetic Vectorschemical and pharmacologic phenomenaBiologyCD8-Positive T-LymphocytesLymphocyte ActivationTransfectionInterleukin 21Interferon-gammaImmune systemmedicineImmunology and AllergyCytotoxic T cellHumansIL-2 receptorAntigen-presenting cellCells CulturedPlant ProteinsAdenoviruses HumanDendritic cellDendritic CellsAllergensTh1 CellsMolecular biologyCytokineImmunologyCytokinesCD8The Journal of allergy and clinical immunology
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EcFLO, a FLORICAULA-like gene from Eschscholzia californica is expressed during organogenesis at the vegetative shoot apex.

2003

FLORICAULA/ LEAFY-like genes were initially characterized as flower meristem identity genes. In a range of angiosperms, expression occurs also in vegetative shoot apices and developing leaves, and in some species with dissected leaves expression is perpetuated during organogenesis at the leaf marginal blastozone. The evolution of these expression patterns and associated functions is not well understood. We have isolated and characterized a FLORICAULA-like gene from California Poppy, Eschscholzia californica Cham. (Papaveraceae), a species belonging to the basal eudicot clade Ranunculales. EcFLO encodes a putative 416-amino-acid protein with highest similarity to homologous genes from Trocho…

California PoppyMolecular Sequence DataOrganogenesisPlant ScienceEschscholziaBotanyGeneticsPapaveraceaePrimordiumAmino Acid SequenceLeafyIn Situ HybridizationPhylogenyDNA PrimersPlant ProteinsEschscholziabiologyBase SequenceSequence Homology Amino AcidReverse Transcriptase Polymerase Chain Reactionfungifood and beveragesRNA ProbesMeristembiology.organism_classificationRanunculalesSequence AlignmentPlanta
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Exchange of Pigment-Binding Amino Acids in Light-Harvesting Chlorophyll a/b Protein

1999

Four amino acids in the major light-harvesting chlorophyll (Chl) a/b complex (LHCII) that are thought to coordinate Chl molecules have been exchanged with amino acids that presumably cannot bind Chl. Amino acids H68, Q131, Q197, and H212 are positioned in helixes B, C, A, and D, respectively, and, according to the LHCII crystal structure [Kühlbrandt, W., et al. (1994) Nature 367, 614-621], coordinate the Chl molecules named a(5), b(6), a(3), and b(3). Moreover, a double mutant was analyzed carrying exchanges at positions E65 and H68, presumably affecting Chls a(4) and a(5). All mutant proteins could be reconstituted in vitro with pigments, although the thermal stability of the resulting mut…

ChlorophyllChloroplastsMacromolecular SubstancesStereochemistryMolecular Sequence DataPhotosynthetic Reaction Center Complex ProteinsPigment bindingLight-Harvesting Protein ComplexesTrimerBiochemistrychemistry.chemical_compoundAmino Acid SequenceAmino AcidsPeptide sequencePlant Proteinschemistry.chemical_classificationBinding SitesChlorophyll APeasPhotosystem II Protein Complexfood and beveragesAmino acidChloroplastB vitaminsAmino Acid SubstitutionchemistryChlorophyllThylakoidMutagenesis Site-DirectedCarrier ProteinsBiochemistry
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Inactivation of a plastid evolutionary conserved gene affects PSII electron transport, life span and fitness of tobacco plants

2007

Chloroplasts contain a plastoquinone-NADH-oxidoreductase (Ndh) complex involved in protection against stress and the maintenance of cyclic electron flow. Inactivation of the Ndh complex delays the development of leaf senescence symptoms. Chlorophyll a fluorescence measurements, blue native gel electrophoresis, immunodetection and other techniques were employed to study tobacco (Nicotiana tabacum) Ndh-defective mutants (DeltandhF). The DeltandhF mutants compared with wild-type plants presented: (i) higher photosystem II : photosystem I (PSII : PSI) ratios; (ii) similar or higher levels of ascorbate, carotenoids, thylakoid peroxidase and superoxide dismutase, yield (Phi(PSII)) and maximal pho…

ChlorophyllChloroplastsTime FactorsLightPhotosystem IIPhysiologyNicotiana tabacumPlant SciencePhotosystem IPhotosynthesisAntioxidantsFluorescenceElectron Transportchemistry.chemical_compoundTobaccoBotanyGene SilencingPhotosynthesisChlorophyll fluorescencePlant ProteinsPhotosystem I Protein ComplexbiologyChlorophyll AReproductionPhotosystem II Protein Complexfood and beveragesNADH Dehydrogenasebiology.organism_classificationChloroplastPhenotypechemistryChlorophyllThylakoidBiophysicsNew Phytologist
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Carotenoid binding sites in LHCIIb

2000

The major light-harvesting complex of photosystem II can be reconstituted in vitro from its bacterially expressed apoprotein with chlorophylls a and b and neoxanthin, violaxanthin, lutein, or zeaxanthin as the only xanthophyll. Reconstitution of these one-carotenoid complexes requires low-stringency conditions during complex formation and isolation. Neoxanthin complexes (containing 30–50% of the all-trans isomer) disintegrate during electrophoresis, exhibit a largely reduced resistance against proteolytic attack; in addition, energy transfer from Chl b to Chl a is easily disrupted at elevated temperature. Complexes reconstituted in the presence of either zeaxanthin or lutein contain nearly …

ChlorophyllLuteinPhotosynthetic Reaction Center Complex ProteinsPigment bindingLight-Harvesting Protein ComplexesXanthophyllsBiologyBinding CompetitiveBiochemistrySubstrate SpecificityLight-harvesting complexchemistry.chemical_compoundNeoxanthinZeaxanthinsTrypsinProtein PrecursorsCarotenoidPlant Proteinschemistry.chemical_classificationBinding SitesChlorophyll ALuteinPhotosystem II Protein Complexfood and beveragesPigments BiologicalPlantsbeta CaroteneCarotenoidseye diseasesZeaxanthinEnergy TransferchemistryBiochemistryXanthophyllElectrophoresis Polyacrylamide GelApoproteinsViolaxanthinEuropean Journal of Biochemistry
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