Search results for "Carbohydrate metabolism"

showing 10 items of 188 documents

MetNet: A two-level approach to reconstructing and comparing metabolic networks

2021

Metabolic pathway comparison and interaction between different species can detect important information for drug engineering and medical science. In the literature, proposals for reconstructing and comparing metabolic networks present two main problems: network reconstruction requires usually human intervention to integrate information from different sources and, in metabolic comparison, the size of the networks leads to a challenging computational problem. We propose to automatically reconstruct a metabolic network on the basis of KEGG database information. Our proposal relies on a two-level representation of the huge metabolic network: the first level is graph-based and depicts pathways a…

Computer scienceEnzyme MetabolismMetabolic networkcomputer.software_genreBiochemistryInfographics0302 clinical medicineCluster AnalysisEnzyme ChemistryData ManagementMammals0303 health sciencesMultidisciplinaryBasis (linear algebra)Settore INF/01 - InformaticaQRChemical ReactionsEukaryotaGraphChemistryVertebratesPhysical SciencesMedicineCarbohydrate MetabolismData miningMetabolic PathwaysComputational problemGraphsNetwork AnalysisMetabolic Networks and PathwaysResearch ArticleComputer and Information SciencesComputingMethodologies_SIMULATIONANDMODELINGScience03 medical and health sciencesMetabolic NetworksSimilarity (psychology)Xenobiotic MetabolismAnimalsHumansMetabolomicsKEGGRepresentation (mathematics)Symbiosis030304 developmental biologyData VisualizationOrganismsBiology and Life SciencesMetabolismMetabolic pathwayComputingMethodologies_PATTERNRECOGNITIONMetabolismAmniotesEnzymologycomputerZoology030217 neurology & neurosurgerySoftwarePLoS ONE
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Carbohydrate availability affects growth and metabolism in peach fruit

2008

Along with sucrose, sorbitol represents the main photosynthetic product and form of translocated carbon in peach. This study aimed at determining whether peach fruit carbohydrate metabolism is affected by changes in source-sink balance, and specifically whether sorbitol or sucrose availability regulates fruit enzyme activities and growth. In various trials, different levels of assimilate availability to growing fruits were induced in vivo, by varying crop load of entire trees, leaf:fruit ratio (L:F) of fruiting shoots, or by interrupting the phloem stream (girdling) to individual fruits. In vitro, fruit tissue was incubated in presence/absence of sorbitol and sucrose. Relative growth rate (…

Crops AgriculturalSucroseSucrosePhysiologySorbitol dehydrogenasePRUNUS PERSICAENZYME ACTIVITYFructosePlant ScienceCarbohydrate metabolismCARBOHYDRATE METABOLISMcrop load enzyme activity girdling leaf area Prunus persica sink strength sorbitol sucrosechemistry.chemical_compoundGirdlingBotanyGeneticsSorbitolbiologyfood and beveragesStarchOrgan SizeCell BiologyGeneral MedicinePlant LeavesHorticultureGlucoseInvertaseSolubilitySOURCE:SINK RATIOchemistryFRUIT GROWTHFruitbiology.proteinSucrose synthaseSorbitolPrunusPhloemPhysiologia Plantarum
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Lactobacillus aquaticus sp. nov., isolated from a Korean freshwater pond.

2009

A Lactobacillus strain, IMCC1736T, was isolated recently from a Korean freshwater pond following an extensive study of the microbial community in this ecosystem. Its 16S rRNA gene was sequenced and phylogenetic analysis placed this strain within the Lactobacillus salivarius group, closely related to Lactobacillus satsumensis NRIC 0604T, with 97.9% sequence similarity. In the present work, the taxonomic status of strain IMCC1736T has been re-evaluated. It was characterized phylogenetically, genotypically and phenotypically and, based on DNA-DNA hybridization values, this strain represents a novel Lactobacillus species. Strain IMCC1736T can be differentiated genotypically from its closest rel…

DNA BacterialGenotypeSequence analysisMolecular Sequence DataFresh WaterBiologySodium ChlorideMicrobiologyDNA RibosomalMicrobiologyRibotypingPhylogeneticsLactobacillusRNA Ribosomal 16SCluster AnalysisEcology Evolution Behavior and SystematicsPhylogenyKoreaLactobacillus salivariusfood and beveragesNucleic Acid HybridizationGeneral MedicineSequence Analysis DNARibosomal RNAHydrogen-Ion Concentration16S ribosomal RNAbiology.organism_classificationBacterial Typing TechniquesRandom Amplified Polymorphic DNA TechniqueLactobacillusFermentationCarbohydrate MetabolismBacteriaLocomotionInternational journal of systematic and evolutionary microbiology
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Sphingobium aromaticiconvertens sp. nov., a xenobiotic-compound-degrading bacterium from polluted river sediment.

2007

A bacterial strain capable of degrading some monochlorinated dibenzofurans, designated RW16T, was isolated from aerobic River Elbe sediments. The strain was characterized based on 16S rRNA gene sequence analysis, DNA G+C content, physiological characteristics, polyamines, ubiquinone and polar lipid pattern and fatty acid composition. This analysis revealed that strain RW16T represents a novel species of the genus Sphingobium. The DNA G+C content of strain RW16T, 60.7 mol%, is the lowest yet reported for the genus. 16S rRNA gene sequence analysis placed strain RW16T as an outlier in the genus Sphingobium. The name Sphingobium aromaticiconvertens sp. nov. is proposed for this dibenzofuran-min…

DNA BacterialGeologic SedimentsMolecular Sequence DataMicrobiologyDNA RibosomalMicrobiologychemistry.chemical_compoundRiversGermanyRNA Ribosomal 16SSequence Homology Nucleic AcidSphingobium aromaticiconvertensPolyaminesWater Pollution ChemicalEcology Evolution Behavior and SystematicsPhospholipidsPhylogenyBenzofuransBase CompositionRiver sedimentbiologyEcologyFatty AcidsQuinonesGenes rRNAGeneral MedicineSequence Analysis DNABiodegradationDibenzofurans Polychlorinated16S ribosomal RNAbiology.organism_classificationBacterial Typing TechniquesSphingomonadaceaeRNA BacterialchemistryCarbohydrate MetabolismXenobioticGenus SphingobiumDNABacteriaInternational journal of systematic and evolutionary microbiology
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Aeromonas encheleia sp. nov., isolated from European Eels

1995

Four strains isolated from European eels in Valencia, Spain, were found to constitute a DNA relatedness group which is 0 to 50% related to the 13 species and DNA group 11 of the genus Aeromonas. Phenotypically, these strains have all of the properties that define the genus Aeromonas. However, they differ from the previously described Aeromonas species by three or more properties. The strains are positive for motility, growth at 37 degrees C, indole production, and arginine dihydrolase activity. They exhibit negative reactions in tests for growth at 42 degrees C and in thiosulfate-citrate-bile salts-sucrose medium (Oxoid), Simmons citrate tests, and tests for lysine and ornithine decarboxyla…

DNA BacterialIndolesImmunologyPenicillinsMicrobiologyMicrobiologychemistry.chemical_compoundNucleic acid thermodynamicsSalicinCell MovementVibrionaceaeSequence Homology Nucleic AcidAnimalsAeromonas encheleiaAmino AcidsLactoseBase CompositionSulfonamidesbiologyArbutinNucleic Acid HybridizationDrug Resistance MicrobialAnguillabiology.organism_classificationPhenotypechemistrySpainCarbohydrate MetabolismAeromonasEnergy sourceBacteria
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Manipulating mtDNA in vivo reprograms metabolism via novel response mechanisms.

2019

Mitochondria have been increasingly recognized as a central regulatory nexus for multiple metabolic pathways, in addition to ATP production via oxidative phosphorylation (OXPHOS). Here we show that inducing mitochondrial DNA (mtDNA) stress in Drosophila using a mitochondrially-targeted Type I restriction endonuclease (mtEcoBI) results in unexpected metabolic reprogramming in adult flies, distinct from effects on OXPHOS. Carbohydrate utilization was repressed, with catabolism shifted towards lipid oxidation, accompanied by elevated serine synthesis. Cleavage and translocation, the two modes of mtEcoBI action, repressed carbohydrate rmetabolism via two different mechanisms. DNA cleavage activ…

DYNAMICSLife CyclesSTRESSMITOCHONDRIAL-DNAADN mitocondrialQH426-470BiochemistryOxidative PhosphorylationLarvaeAdenosine TriphosphateTRANSCRIPTIONPost-Translational ModificationEnergy-Producing OrganellesProtein MetabolismOrganic CompoundsDrosophila MelanogasterChemical ReactionsMETHYLATIONEukaryotaAcetylationAnimal ModelsDNA Restriction EnzymesKetonesCellular ReprogrammingMitochondrial DNAMitochondriaTRANSLOCATIONNucleic acidsInsectsChemistryDROSOPHILAExperimental Organism SystemsPhysical SciencesSURVIVALCarbohydrate MetabolismCellular Structures and OrganellesMetabolic Networks and PathwaysResearch ArticlePyruvateArthropodaForms of DNAeducationCarbohydratesBioenergeticsResearch and Analysis MethodsDNA MitochondrialBiokemia solu- ja molekyylibiologia - Biochemistry cell and molecular biologyModel OrganismsGenetiikka kehitysbiologia fysiologia - Genetics developmental biology physiologyGeneticsAnimalsHumansBiology and life sciencesOrganic ChemistryOrganismsChemical CompoundsProteinsDNACell BiologyInvertebratesDELETIONSOxidative StressMetabolismMAINTENANCEDiabetes Mellitus Type 2Animal Studies1182 Biochemistry cell and molecular biologyAcidsDevelopmental BiologyPLoS Genetics
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Mechanism of the Citrate Transporters in Carbohydrate and Citrate Cometabolism in Lactococcus and Leuconostoc Species

1998

ABSTRACT Citrate metabolism in the lactic acid bacterium Leuconostoc mesenteroides generates an electrochemical proton gradient across the membrane by a secondary mechanism (C. Marty-Teysset, C. Posthuma, J. S. Lolkema, P. Schmitt, C. Divies, and W. N. Konings, J. Bacteriol. 178:2178–2185, 1996). Reports on the energetics of citrate metabolism in the related organism Lactococcus lactis are contradictory, and this study was performed to clarify this issue. Cloning of the membrane potential-generating citrate transporter (CitP) of Leuconostoc mesenteroides revealed an amino acid sequence that is almost identical to the known sequence of the CitP of Lactococcus lactis . The cloned gene was exp…

EXPRESSIONLactococcusMolecular Sequence DataApplied Microbiology and BiotechnologyCitric AcidMicrobiologyACID BACTERIAchemistry.chemical_compoundBacterial ProteinsNUCLEOTIDE-SEQUENCELactococcusLeuconostocAmino Acid SequenceCloning MolecularElectrochemical gradientchemistry.chemical_classificationEcologybiologySymportersLACTATE EFFLUXLactococcus lactisfood and beveragesMETABOLIC ENERGYMembrane transportHydrogen-Ion Concentrationbiology.organism_classificationENERGY GENERATIONLACTIS BIOVAR DIACETYLACTISAmino acidchemistryBiochemistryLeuconostoc mesenteroidesESCHERICHIA-COLIFood MicrobiologyCarbohydrate MetabolismbacteriaKLEBSIELLA-PNEUMONIAECitric acidCarrier ProteinsLeuconostocFood ScienceBiotechnologyMEMBRANE-VESICLESApplied Environmental Microbiology
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Carbamazepine exposure in the sea anemones Anemonia sulcata and Actinia equina: Metabolite identification and physiological responses

2020

Trabajo presentado en el 11º Congreso Ibérico, 8º Iberoamericano de Contaminación y Toxicología (CICTA 2018) celebrado en la Escuela Técnica Superior de Ingeniería de Montes, Forestal y del Medio Natural, Madrid del 11 al 13 de julio de 2018

Environmental Engineering010504 meteorology & atmospheric sciencesMetaboliteZoologyCarbohydrate metabolism010501 environmental sciences01 natural scienceschemistry.chemical_compoundMediterranean seaBiotransformationBiotransformationsAnthozoaMediterranean SeaAnimalsEnvironmental ChemistryEcotoxicologyWaste Management and DisposalEcosystem0105 earth and related environmental sciencesMass spectrometrybiologyChemistryMetabolismAnthozoabiology.organism_classificationBioaccumulationPollutionCarbamazepineSea AnemonesBioaccumulationPharmaceuticalsWater Pollutants ChemicalActiniaScience of The Total Environment
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Alterations of carbohydrate metabolism during pregnancy. Effects on the mother and new born infant.

2020

Abstract Introduction Gestational diabetes is the pathology that most frequently causes medical alterations in pregnancy. The objective of this study is to assess the relationship between the presence of alterations in the metabolism of carbohydrates during pregnancy and the risk of presenting adverse obstetric outcomes in the mother and the fetus. Patients and method An observational study was conducted in 799 women who had just given birth. The clinical and obstetric characteristics of the patients, as well as the data related to pregnancy and delivery, including the state of the newborn were analyzed. The information was evaluated in relation to the alterations in the carbohydrate metabo…

EpisiotomyAdultmedicine.medical_specialtymedicine.medical_treatmentCarbohydrate metabolismFetal Distress03 medical and health sciences0302 clinical medicinePregnancyDiabetes mellitusGlucose IntolerancemedicineHumans030212 general & internal medicineFetusPregnancyObstetricsVaginal deliverybusiness.industryInfant Newbornmedicine.diseaseGestational diabetesHospitalizationDiabetes GestationalEpisiotomyCarbohydrate MetabolismObservational studyFemalebusinessMedicina clinica
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Homozygous deletion of ATC1 and NTC1 genes in Candida parapsilosis abolishes trehalase activity and affects cell growth, sugar metabolism, stress res…

2015

A double homozygous atc1Δ/atc1Δ/ntc1Δ/ntc1Δ mutant (atc1Δ/ntc1Δ KO) was constructed in the pathogen opportunistic yeast Candida parapsilosis by disruption of the two chromosomal alleles coding for NTC1 gene (encoding a neutral trehalase) in a Cpatc1Δ/atc1Δ background (atc1Δ KO strain, deficient in acid trehalase). The Cpatc1Δ/ntc1Δ KO mutant failed to counteract the inability of Cpatc1Δ cells to metabolize exogenous trehalose and showed a similar growth pattern on several monosaccharides and disaccharides. However, upon prolonged incubation in either rich medium (YPD) or nutrient-starved medium the viability of Cpatc1Δ cells exhibited a sensitive phenotype, which was augmented by further Cp…

Fungal proteinVirulencebiologyMutantTrehalase activityTrehaloseCandida parapsilosisbiology.organism_classificationMicrobiologyTrehaloseYeastMicrobiologyFungal ProteinsOxidative Stresschemistry.chemical_compoundchemistryStress PhysiologicalBiofilmsGeneticsCarbohydrate MetabolismTrehalaseTrehalaseGene knockoutCandidaSequence DeletionFungal Genetics and Biology
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