Search results for "Metabolic network"

showing 10 items of 115 documents

Sialotranscriptomics of the argasid tick ornithodoros moubata along the trophogonic cycle

2021

32 páginas, 8 tablas, 6 figuras

Proteomics0301 basic medicineSwinePhysiologyRC955-962Gene ExpressionDisease VectorsProteomicsBiochemistryTranscriptomeMedical Conditions0302 clinical medicineTicksArctic medicine. Tropical medicineGene expressionMedicine and Health SciencesHuman relapsing feverGeneticsbiologyEukaryotaGenomicsProteasesBody FluidsEnzymesBloodInfectious DiseasesFemaleMetabolic PathwaysAnatomyPublic aspects of medicineRA1-1270Transcriptome analysisVitellogeninsMetabolic Networks and PathwaysResearch ArticleIxodidaeArthropoda030231 tropical medicineTickSalivary glandsArthropod Proteins03 medical and health sciencesExocrine GlandsOrnithodoros moubataArachnidaGeneticsAnimalsXenobiotic MetabolismTick ControlOrnithodorosSalivaIllumina dye sequencingIxodesAsfarviridaeImmunityOrganismsPublic Health Environmental and Occupational HealthBiology and Life SciencesComputational BiologyProteinsGenome Analysisbiology.organism_classificationInvertebratesOrnithodoros moubataPhospholipases A2Species InteractionsMetabolism030104 developmental biologyAfricaEnzymologyMetalloproteasesAfrican swine feverTranscriptomeDigestive SystemZoology
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Differential proteomic analysis of an engineered Streptomyces coelicolor strain reveals metabolic pathways supporting growth on n-hexadecane

2012

The alkB gene, encoding an alkane monooxygenase in the actinomycete Gordonia sp. SoCg, was expressed in the non-alkane-degrading actinomycete Streptomyces coelicolor M145. The resulting engineered strain, M145-AH, can grow on n-hexadecane as sole carbon source. To unravel proteins associated with growth on n-alkanes, proteome of M145-AH after 6, 24, and 48 h of incubation in the Bushnell-Haas (BH) mineral medium containing n-hexadecane as sole carbon source (H condition) and in BH without any carbon source (0 condition) were compared using 2D-differential gel electrophoresis. Proteome analysis revealed significant changes only at 48 h, showing 48 differentially abundant proteins identified …

ProteomicsProteomeAlkBProtein metabolismGene ExpressionStreptomyces coelicolorSettore BIO/19 - Microbiologia GeneraleProteomicsApplied Microbiology and BiotechnologyStreptomyceschemistry.chemical_compoundAlkanesElectrophoresis Gel Two-DimensionalbiologyStreptomyces coelicolorProteomicGeneral MedicineMetabolism2d-dige analysisMembrane transportbiology.organism_classificationCarbonRecombinant ProteinsStreptomycesCulture MediaN-alkane monoxygenaseStreptomyceN-hexadecane utilizationchemistryBiochemistryEngineered strainProteomebiology.protein2D-DIGE analysiCytochrome P-450 CYP4AMetabolic Networks and PathwaysBiotechnologyApplied Microbiology and Biotechnology
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Differential proteomic analysis reveals novel links between primary metabolism and antibiotic production in Amycolatopsis balhimycina.

2010

A differential proteomic analysis, based on 2-DE and MS procedures, was performed on Amycolatopsis balhimycina DSM5908, the actinomycete producing the vancomycin-like antibiotic balhimycin. A comparison of proteomic profiles before and during balhimycin production characterized differentially and constitutively expressed protein isoforms, which were associated to 203 ORFs in the A. balhimycina genome. These data, providing insights on the major metabolic pathways/molecular processes operating in this organism, were used to compile 2-DE reference maps covering 3-10, 4-7 and 4.5-5.5 pH gradients available over the World Wide Web as interactive web pages (http://www.unipa.it/ampuglia/Abal-prot…

ProteomicsProteomeAmycolatopsisBiologyProteomicsSettore BIO/19 - Microbiologia GeneraleBiochemistryMass SpectrometryFungal Proteinschemistry.chemical_compoundBiosynthesisVancomycinActinomycetalesProtein biosynthesisCluster AnalysisElectrophoresis Gel Two-Dimensionalglycopeptide antibioticMolecular BiologyGenechemistry.chemical_classificationGene Expression Profiling2-DE reference mapprimary and secondary metabolismMetabolismHydrogen-Ion ConcentrationAmycolatopsis balhimycinabiology.organism_classificationAnti-Bacterial AgentsAmino acidMetabolic pathwaychemistryBiochemistrygene expressionMetabolic Networks and Pathways
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Adaptative biochemical pathways and regulatory networks in Klebsiella oxytoca BAS-10 producing a biotechnologically relevant exopolysaccharide during…

2012

Abstract Background A bacterial strain previously isolated from pyrite mine drainage and named BAS-10 was tentatively identified as Klebsiella oxytoca. Unlikely other enterobacteria, BAS-10 is able to grow on Fe(III)-citrate as sole carbon and energy source, yielding acetic acid and CO2 coupled with Fe(III) reduction to Fe(II) and showing unusual physiological characteristics. In fact, under this growth condition, BAS-10 produces an exopolysaccharide (EPS) having a high rhamnose content and metal-binding properties, whose biotechnological applications were proven as very relevant. Results Further phylogenetic analysis, based on 16S rDNA sequence, definitively confirmed that BAS-10 belongs t…

Proteomicsmetal binding exopolysaccharideRhamnoseeducationlcsh:QR1-502BioengineeringSettore BIO/19 - Microbiologia GeneraleFerric CompoundsApplied Microbiology and BiotechnologyCitric Acidlcsh:Microbiology03 medical and health scienceschemistry.chemical_compoundAcetic acidRNA Ribosomal 16SGene Regulatory NetworksPhylogeny030304 developmental biology2. Zero hunger0303 health sciencesbiology030306 microbiologyResearchKlebsiella oxytocaKlebsiella oxytocabiology.organism_classificationBacterial strainKlebsiella oxytoca; 2D-DIGE analysis; metal binding exopolysaccharide;Metabolic pathwaychemistryBiochemistryFermentation2D-DIGE analysiFermentationEnergy sourceCitric acidMetabolic Networks and PathwaysBiotechnology
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Longevity: epigenetic and biomolecular aspects

2015

AbstractMany aging theories and their related molecular mechanisms have been proposed. Simple model organisms such as yeasts, worms, fruit flies and others have massively contributed to their clarification, and many genes and pathways have been associated with longevity regulation. Among them, insulin/IGF-1 plays a key and evolutionary conserved role. Interestingly, dietary interventions can modulate this pathway. Calorie restriction (CR), intermittent fasting, and protein and amino acid restriction prolong the lifespan of mammals by IGF-1 regulation. However, some recent findings support the hypothesis that the long-term effects of diet also involve epigenetic mechanisms. In this review, w…

QH301-705.5media_common.quotation_subjectmedicine.medical_treatmentCalorie restrictionved/biology.organism_classification_rank.speciesBiologyGeneral Biochemistry Genetics and Molecular BiologyEpigenesis GeneticCellular and Molecular NeuroscienceDietary interventionslongevityIntermittent fastingmedicineAnimalsHumansInsulinEpigeneticsBiology (General)Insulin-Like Growth Factor IModel organismGenemedia_commonGeneticsepigeneticsAnimalved/biologyInsulinLongevityGeneral Medicinecaloric restrictionepigeneticMetabolic Networks and PathwaysHumanBiomolecular Concepts
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Factors that influence the quality of metabolomics data in in vitro cell toxicity studies: a systematic survey

2021

Abstract REACH (Registration, Evaluation, Authorization and Restriction of Chemicals) is a global strategy and regulation policy of the EU that aims to improve the protection of human health and the environment through the better and earlier identification of the intrinsic properties of chemical substances. It entered into force on 1st June 2007 (EC 1907/2006). REACH and EU policies plead for the use of robust high-throughput "omic" techniques for the in vitro investigation of the toxicity of chemicals that can provide an estimation of their hazards as well as information regarding the underlying mechanisms of toxicity. In agreement with the 3R’s principles, cultured cells are nowadays wide…

Quality ControlHEPATOTOXICITYSciencemedia_common.quotation_subjectDiseasesComputational biologyMETABOLISMBiologyHEPATOCYTESCitric AcidArticleXenobioticsProductes químicschemistry.chemical_compoundMetabolomicsMedical researchCell Line TumorMetabolomeHumansMetabolomicsSPECTROMETRY DATAQuality (business)HEPARG CELLSAcetaminophenmedia_commonBATCH EFFECT CORRECTIONMultidisciplinaryFATTY-ACIDDrug discoveryValproic AcidQRReproducibility of ResultsHep G2 CellsIn vitroBioactive compoundGLUTAMINEMetabolic pathwayLiverchemistryToxicityMetabolomeMedicineCURRENT STATEChemical and Drug Induced Liver InjuryXenobioticMetabolic Networks and PathwaysBiomarkersVALPROATEScientific Reports
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Abscisic Acid Connects Phytohormone Signaling with RNA Metabolic Pathways and Promotes an Antiviral Response that Is Evaded by a Self-Controlled RNA …

2020

© 2020 The Authors.

RNA StabilityvirusesPotyvirusArabidopsisPlant Scienceantiviral immune evasionBiochemistryArticleTranscriptomeAbscisic acidPlant Growth RegulatorsPlant virusTobaccoPlant ImmunityMolecular BiologyImmune EvasionPlant DiseasesRNA metabolismbiologyfungimathematical modelingPotyvirusfood and beveragesRNARNA virusTranslation (biology)viral polyprotein processingCell BiologyViral polyprotein processingbiology.organism_classificationCell biologyViral replicationRNA PlantAntiviral immune evasionMathematical modelingMetabolic Networks and PathwaysAbscisic AcidSignal TransductionBiotechnologyPlant Communications
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Xanthine dehydrogenase processes retinol to retinoic acid in human mammary epithelial cells

2008

Retinoic acid is considered to be the active metabolite of retinol, able to control differentiation and proliferation of epithelia. Retinoic acid biosynthesis has been widely described with the implication of multiple enzymatic activities. However, our understanding of the cell biological function and regulation of this process is limited. In a recent study we evidenced that milk xanthine oxidase (E.C. 1.17.3.2.) is capable to oxidize all-trans-retinol bound to CRBP (holo-CRBP) to all-trans-retinaldehyde and then to all-trans-retinoic acid. To get further knowledge regarding this process we have evaluated the biosynthetic pathway of retinoic acid in a human mammary epithelial cell line (HME…

Receptors Retinoic AcidXanthine dehydrogenaseCellRetinoic acidOxypurinolTretinoinRetinoic acid receptor betaBiologychemistry.chemical_compoundSettore BIO/10 - BiochimicaDrug DiscoverymedicineHumansMammary Glands HumanVitamin AXanthine oxidaseHMECPharmacologyRetinolEpithelial CellsRetinol-Binding Proteins CellularGeneral MedicineMilk ProteinsNADRetinoic acid receptormedicine.anatomical_structurechemistryBiochemistryXanthine dehydrogenaseRetinol oxidationRetinoic acid receptor alphaRetinoid AcidMetabolic Networks and PathwaysJournal of Enzyme Inhibition and Medicinal Chemistry
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The YJL185C, YLR376C and YJR129C genes of Saccharomyces cerevisiae are probably involved in regulation of the glyoxylate cycle

2006

The ER24 aci (acidification) mutant of Saccharomyces cerevisiae excreting protons in the absence of glucose was transformed with a multicopy yeast DNA plasmid library. Three different DNA fragments restored the wild-type phenotype termed Aci- because it does not acidify the complete glucose medium under the tested conditions. Molecular dissection of the transforming DNA fragments identified two multicopy suppressor genes YJL185C, YJR129C and one allelic YLR376C. Disruption of either of the three genes in wild-type yeast strain resulted in acidification of the medium (Aci+ phenotype) similarly to the original ER24 mutant. These data indicate the contribution of the ER24 gene product Ylr376Cp…

Saccharomyces cerevisiae ProteinsMutantSaccharomyces cerevisiaeGenes FungalGlyoxylate cycleAutophagy-Related ProteinsGlyoxylatesMethyltransferasesSaccharomyces cerevisiaeBiologyHydrogen-Ion Concentrationbiology.organism_classificationGeneral Biochemistry Genetics and Molecular BiologyYeastCulture MediaGene productchemistry.chemical_compoundPlasmidchemistryBiochemistryGenes SuppressorGeneDNAMetabolic Networks and Pathways
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BioAnalysis: A Framework for Structural and Functional Robustness Analysis of Metabolic Networks

2010

The main objective of this work is to analyze metabolic networks evolution in terms of their robustness and fault tolerance capabilities. In metabolic networks, errors can be seen as random removal of network nodes, while attacks are high-connectivity-degree node deletion aimed at compromising network activity. This paper proposes a software framework, namely BioAnalysis, used to test the robustness and the fault tolerance capabilities of real metabolic networks, when mutations and node deletions affect the network structure. The performed simulations are related to the central metabolic network of the well-known E. coli single-celled bacterium and involve either hub nodes or non-hub nodes,…

Settore ING-INF/05 - Sistemi Di Elaborazione Delle InformazioniBioanalysisbusiness.industryComputer scienceDistributed computingNode (networking)Metabolic networkFault tolerancecomputer.software_genreMetabolic networks hub and non-hub nodes network robustness E. coli properties analysisNetwork operations centerSoftware frameworkSoftwareRobustness (computer science)businesscomputer2010 International Conference on Complex, Intelligent and Software Intensive Systems
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