Search results for "Ornithine decarboxylase"

showing 10 items of 12 documents

Polyamine metabolism during seedling development in rice

1994

The main free amines identified during growth and development of rice seedlings were agmatine, putrescine, spermidine, diaminopropane and tyramine. Amine composition differed according to tissue and stages of development. Conjugated amines were only found in roots. We present evidence that arginine decarboxylase (ADC) regulates putrescine during the development of rice seedlings. When ADC action was blocked by DFMA (α-DL-difluoromethylarginine, a specific irreversible inhibitor of ADC), polyamine titers and seedling development were diminished; when agmatine or putrescine was added, normal polyamine titers and growth were restored. The effects of DFMA were concentration dependent. DFMO (α-D…

0106 biological sciences[SDE] Environmental SciencesPhysiology[SDV]Life Sciences [q-bio]Plant ScienceBiology01 natural sciencesOrnithine decarboxylase03 medical and health scienceschemistry.chemical_compoundComputingMilieux_MISCELLANEOUS030304 developmental biology0303 health sciencesTyramineSpermidine[SDV] Life Sciences [q-bio]chemistryBiochemistry[SDE]Environmental SciencesPutrescineDFMAAgmatinePolyamineArginine decarboxylaseAgronomy and Crop ScienceRIZ010606 plant biology & botany
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Polyamines and related enzymes in rice seeds differing in germination potential

1994

In ungerminated rice seeds, (Japonica rice variety, CV Tapei 309), the content of free amines (putrescine, spermidine, spermine, tyramine) was higher in seed lots having a low germination frequency compared to those with high germination potential. Conversely, amine conjugates (di-feruloylputrescine, di-feruloylspermidine, diferuloyldiaminopropane and feruloyltyramine) decreased with loss of viability. Thus, these compounds appeared to constitute biochemical markers of seed viability. In seeds with high germination potential, conjugates decreased drastically during germination, with an early and rapid increase in free amines (putrescine, spermidine, tyramine). Arginine decarboxylase (ADC) a…

0106 biological sciences[SDE] Environmental SciencesPhysiology[SDV]Life Sciences [q-bio]SperminePlant Science01 natural sciencesOrnithine decarboxylase03 medical and health scienceschemistry.chemical_compoundComputingMilieux_MISCELLANEOUS030304 developmental biology0303 health sciencesbiologyfood and beveragesSpermidine[SDV] Life Sciences [q-bio]chemistryBiochemistryGermination[SDE]Environmental SciencesPutrescinebiology.proteinSpermidine synthasePolyamineArginine decarboxylaseAgronomy and Crop ScienceRIZ010606 plant biology & botany
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A g316a polymorphism in the ornithine decarboxylase gene promoter modulates mycn‐driven childhood neuroblastoma

2021

Simple Summary Neuroblastoma is a devasting childhood cancer in which multiple copies (amplification) of the cancer-causing gene MYCN strongly predict poor outcome. Neuroblastomas are reliant on high levels of cellular components called polyamines for their growth and malignant behavior, and the gene regulating polyamine synthesis is called ODC1. ODC1 is often coamplified with MYCN, and in fact is regulated by MYCN, and like MYCN is prognostic of poor outcome. Here we studied a naturally occurring genetic variant or polymorphism that occurs in the ODC1 gene, and used gene editing to demonstrate the functional importance of this variant in terms of ODC1 levels and growth of neuroblastoma cel…

0301 basic medicineCancer ResearchSNPSingle-nucleotide polymorphismBiologylcsh:RC254-282ArticleOrnithine decarboxylase03 medical and health sciencesneuroblastomaNeuroblastoma0302 clinical medicineNeuroblastomaGenotypeMYCNMedicine and Health SciencesTranscriptional regulationmedicineODC1neoplasmsWild typePromotermedicine.diseaselcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensMolecular biology030104 developmental biologyOncology030220 oncology & carcinogenesisChildhood Neuroblastoma
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Regulating T-cell differentiation through the polyamine spermidine

2021

Background The cross-talk between the host and its microbiota plays a key role in the promotion of health. The production of metabolites such as polyamines by intestinal-resident bacteria is part of this symbiosis shaping host immunity. The polyamines putrescine, spermine, and spermidine are abundant within the gastrointestinal tract and might substantially contribute to gut immunity. Objective We aimed to characterize the polyamine spermidine as a modulator of T-cell differentiation and function. Methods Naive T cells were isolated from wild-type mice or cord blood from healthy donors and submitted to polarizing cytokines, with and without spermidine treatment, to evaluate CD4+ T-cell diff…

0301 basic medicineSpermine oxidaseSpermidineImmunologySpermineBiologyT-Lymphocytes RegulatoryOrnithine decarboxylaseMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineAnimalsImmunology and AllergyImmunity MucosalMice KnockoutMice Inbred BALB CFOXP3Cell DifferentiationDendritic cellColitisCell biologySpermidine030104 developmental biologychemistryCardiovascular and Metabolic DiseasesPutrescinePolyamine030215 immunology
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Polyamines Impair Immunity to Helicobacter pylori by Inhibiting L-Arginine Uptake Required for Nitric Oxide Production

2010

International audience; BACKGROUND & AIMS: Helicobacter pylori-induced immune responses fail to eradicate the bacterium. Nitric oxide (NO) can kill H pylori. However, translation of inducible NO synthase (iNOS) and NO generation by H pylori-stimulated macrophages is inhibited by the polyamine spermine derived from ornithine decarboxylase (ODC), and is dependent on availability of the iNOS substrate L-arginine (L-Arg). We determined if spermine inhibits iNOS-mediated immunity by reducing L-Arg uptake into macrophages. METHODS: Levels of the inducible cationic amino acid transporter (CAT) 2, ODC, and iNOS were measured in macrophages and H pylori gastritis tissues. L-Arg uptake, iNOS expressi…

ArginineSpermineNitric Oxide Synthase Type IIArginineNitric OxideOrnithine DecarboxylaseArticleOrnithine decarboxylaseNitric oxideHelicobacter Infections03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineImmune systemGastric mucosamedicinePolyaminesAnimalsHumansCationic Amino Acid Transporter 2Cells Cultured030304 developmental biology0303 health sciencesImmunity CellularHepatologybiologyHelicobacter pyloriReverse Transcriptase Polymerase Chain ReactionMacrophagesGastroenterology[SDV.MHEP.HEG]Life Sciences [q-bio]/Human health and pathology/Hépatology and GastroenterologyHelicobacter pyloribiology.organism_classificationMolecular biologyMice Inbred C57BLDisease Models Animalmedicine.anatomical_structurechemistryGene Expression RegulationGastric Mucosa030220 oncology & carcinogenesisGastritisRNASperminePolyamine
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Molecular Cloning, Heterologous Expression, and Characterization of Ornithine Decarboxylase from Oenococcus oeni

2011

International audience; Ornithine decarboxylase (ODC) is responsible for the production of putrescine, the major biogenic amine found in wine. Oenococcus oeni is the most important lactic acid bacterium in the winemaking process and is involved in malolactic fermentation. We report here the characterization of ODC from an O. oeni strain isolated from wine. Screening of 263 strains isolated from wine and cider from all over the world revealed that the presence of the odc gene appears to be strain specific in O. oeni. After cloning, heterologous expression in Escherichia coli, and characterization, the enzyme was found to have a molecular mass of 85 kDa and a pI of 6.2 and revealed maximal ac…

Biogenic Aminesgenetic structuresWinemedicine.disease_causeMicrobiologyOrnithine decarboxylaseOrnithine decarboxylaseIndustrial Microbiology03 medical and health scienceschemistry.chemical_compoundmedicineMalolactic fermentationHumans[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyEscherichia coliOenococcus030304 developmental biologyOenococcus oeniWinemaking0303 health sciencesCadaverinebiology030306 microbiologyTemperaturefood and beveragesHydrogen-Ion Concentrationbiology.organism_classificationMolecular WeightKineticschemistryBiochemistryFermentationPutrescineHeterologous expressionOenococcus oeniFood ScienceJournal of Food Protection
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Vibrio ponticus sp. nov., a neighbour of V fluvialis-V. furnissii clade, isolated from gilthead sea bream, mussels and seawater.

2004

A new Vibrio species, Vibrio ponticus, is proposed to accommodate four marine bacteria isolated from sea water, mussels and diseased sea bream (Sparus aurata), at the Mediterranean coast of Spain. Strains are Gram negative, slightly halophilic bacteria that require Na+ ion for growth, oxidase and catalase positive, negative for arginine dihydrolase and ornithine decarboxylase but positive for lysine decarboxylase and indole, and utilize beta-hydroxybutyrate as a sole carbon source. Phylogenetic analysis locate these marine bacteria in the vicinity of the V. fluvialis-V. furnissii clade, sharing with these two species 16S rDNA sequence similarities slightly above 97% (97.1 and 97.3%, respect…

DNA BacterialIndolesCarboxy-LyasesHydrolasesMolecular Sequence DataBiologyOrnithine DecarboxylaseApplied Microbiology and BiotechnologyMicrobiologyDNA RibosomalMicrobiologyMarine bacteriophageVibrionaceaeVibrio InfectionsRNA Ribosomal 16SSequence Homology Nucleic AcidMediterranean SeaAnimalsSeawaterRibosomal DNAEcology Evolution Behavior and SystematicsPhylogenyVibrioLysine decarboxylase3-Hydroxybutyric AcidFatty AcidsNucleic Acid HybridizationSequence Analysis DNA16S ribosomal RNAbiology.organism_classificationCatalaseVibrioSea BreamBivalviaSpainVibrio InfectionsPhenazinesGentian VioletOxidoreductasesBacteriaSystematic and applied microbiology
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Inhibition of the dimorphic transition of Candida albicans by the ornithine decarboxylase inhibitor 1,4-diaminobutanone: alterations in the glycoprot…

1990

Hyphal development in Candida albicans was selectively blocked by the ornithine decarboxylase competitive inhibitor 1,4-diaminobutanone (DAB). Inhibition of hyphal development required DAB during both yeast inoculum growth and subsequent incubation at 37 degrees C to induce mycelial growth. This effect was not due to general growth inhibition since DAB did not inhibit yeast growth, and reduced protein synthesis by 30% at most. Moreover, protein synthesis was unaffected by DAB when cells were pre-grown in drug-containing media. Since DAB inhibited dimorphic transition at 37 degrees C, morphology- and temperature-dependent protein synthesis could be distinguished. DAB stimulated the synthesis…

Membrane GlycoproteinsOrnithine Decarboxylase InhibitorsBiologybiology.organism_classificationMicrobiologyMolecular biologyYeastOrnithine decarboxylaseFungal Proteinschemistry.chemical_compoundchemistryBiochemistryOrnithine Decarboxylase InhibitorCell WallEnzyme inhibitorCandida albicansPutrescinebiology.proteinProtein biosynthesisGrowth inhibitionCandida albicansPolyamineJournal of General Microbiology
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Gliadin activates arginase pathway in RAW264.7 cells and in human monocytes

2014

AbstractCeliac disease (CD) is an autoimmune enteropathy triggered in susceptible individuals by the ingestion of gliadin-containing grains. Recent studies have demonstrated that macrophages play a key role in the pathogenesis of CD through the release of inflammatory mediators such as cytokines and nitric oxide (NO). Since arginine is the obliged substrate of iNOS (inducible nitric oxide synthase), the enzyme that produces large amount of NO, the aim of this work is to investigate arginine metabolic pathways in RAW264.7 murine macrophages after treatment with PT-gliadin (PTG) in the absence and in the presence of IFNγ. Our results demonstrate that, besides strengthening the IFNγ-dependent …

OrnithineArginineBlotting WesternNitric Oxide Synthase Type IIOrnithine DecarboxylaseReal-Time Polymerase Chain ReactionArginineMonocytesGliadinOrnithine decarboxylaseInterferon-gammaMicechemistry.chemical_compoundmedicineAnimalsHumansCeliac diseaseMacrophageRNA MessengerMolecular BiologyCells CulturedArginasebiologyReverse Transcriptase Polymerase Chain ReactionMacrophagesMonocytenutritional and metabolic diseasesNitric oxideOrnithineMolecular biologyPeptide FragmentsNitric oxide synthaseArginasemedicine.anatomical_structureBiochemistrychemistrybiology.proteinMolecular MedicineInterferon-γGliadinBiochimica et Biophysica Acta (BBA) - Molecular Basis of Disease
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Stimulation of root and somatic embryo production in Euconymus europaeus L. by an inhibitor of polyamine biosynthesis

1995

In vitro formation of roots and somatic embryos is obtained from cotyledon explants of a Spindle tree (Euonymus europaeus L.) cultured on two different media: a medium inducing callus formation and the production of roots, and a medium inducing callus formation, root and somatic embryo production. We studied the effects of α-difluoromethylornithine (DFMO), a specific, irreversible inhibitor of ornithine decarboxylase (ODC) on root and somatic embryo production, growth and titers of putrescine in Euonymus explants and explant-derived calli. Early changes in putrescine levels were detected in both cultures before the visible emergence of roots or somatic embryos. DFMO rapidly inhibited putres…

[SDE] Environmental Sciences0106 biological sciencesfood.ingredientSomatic embryogenesisPhysiologyCallus formationSomatic cell[SDV]Life Sciences [q-bio]Plant ScienceBiology01 natural sciencesOrnithine decarboxylase03 medical and health scienceschemistry.chemical_compoundfoodComputingMilieux_MISCELLANEOUS030304 developmental biology0303 health sciencesfungiCell biology[SDV] Life Sciences [q-bio]BiochemistrychemistryCallus[SDE]Environmental SciencesPutrescinePolyamineAgronomy and Crop ScienceCotyledon010606 plant biology & botany
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