Search results for "Metabolic network"

showing 10 items of 115 documents

Digitalis purpurea P5 beta R2, encoding steroid 5 beta-reductase, is a novel defense-related gene involved in cardenolide biosynthesis.

2009

The stereospecific 5 beta-reduction of progesterone is a required step for cardiac glycoside biosynthesis in foxglove plants. Recently, we have isolated the gene P5 beta R, and here we investigate the function and regulation of P5 beta R2, a new progesterone 5 beta-reductase gene from Digitalis purpurea. P5 beta R2 cDNA was isolated from a D. purpurea cDNA library and further characterized at the biochemical, structural and physiological levels. Like P5 beta R, P5 beta R2 catalyzes the 5 beta-reduction of the Delta(4) double bond of several steroids and is present in all plant organs. Under stress conditions or on treatment with chemical elicitors, P5 beta R expression does not vary, wherea…

Models MolecularDNA ComplementaryPhysiologyMolecular Sequence DataPlant ScienceBiologyGenes Plantchemistry.chemical_compoundBiosynthesisGene Expression Regulation PlantComplementary DNACardenolidemedicineAmino Acid SequenceRNA MessengerCloning MolecularBeta (finance)Cardiac glycosideRegulation of gene expressionDigitaliscDNA libraryReverse Transcriptase Polymerase Chain ReactionGene Expression ProfilingDigitalis purpureaSequence Analysis DNAbiology.organism_classificationCardenolidesKineticschemistryBiochemistryOxidoreductasesMetabolic Networks and Pathwaysmedicine.drugThe New phytologist
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Small genomes and the difficulty to define minimal translation and metabolic machineries

2015

The notion of minimal life has sparked the interest of scientists in different fields, ranging from the origin-of-life research to biotechnology-oriented synthetic biology. Whether the interest is focused on the emergence of protocells out of prebiotic systems or the design of a cell chassis ready to incorporate new devices and functions, proposing minimal combinations of genes for life is not a trivial task. Using comparative genomics and biochemistry of endosymbionts (i.e., intracellular mutualistic symbionts) and intracellular parasites, a decade ago we proposed the core of a minimal gene set for a simple heterotrophic cell adapted to a chemically complex environment. In this work, we di…

Muller’s ratchettRNA post-transcriptional modificationslcsh:EvolutionMetabolic networkComputational biologyBiologyGenomeMicrobiology03 medical and health sciencesSynthetic biologylcsh:QH540-549.5lcsh:QH359-425GeneEcology Evolution Behavior and Systematics030304 developmental biologyComparative genomicsGenetics0303 health sciencesstreamlining hypothesisEcology030306 microbiologyMuller's ratchetminimal metabolismminimal cellMuller's ratchetMinimal genomeSynthetic Biologylcsh:EcologyFlux (metabolism)Black Queen HypothesisFrontiers in Ecology and Evolution
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Consistency Analysis of Genome-Scale Models of Bacterial Metabolism: A Metamodel Approach.

2015

Genome-scale metabolic models usually contain inconsistencies that manifest as blocked reactions and gap metabolites. With the purpose to detect recurrent inconsistencies in metabolic models, a large-scale analysis was performed using a previously published dataset of 130 genome-scale models. The results showed that a large number of reactions (~22%) are blocked in all the models where they are present. To unravel the nature of such inconsistencies a metamodel was construed by joining the 130 models in a single network. This metamodel was manually curated using the unconnected modules approach, and then, it was used as a reference network to perform a gap-filling on each individual genome-s…

MultidisciplinaryConsistency analysisBacteriaProcess (engineering)lcsh:RGenome scalelcsh:MedicineBiologycomputer.software_genreBioinformaticsModels BiologicalMetamodelingSet (abstract data type)Consistency (database systems)Bacterial ProteinsProof of conceptlcsh:QData miningMetagenomicsCompleteness (statistics)lcsh:SciencecomputerGenome BacterialMetabolic Networks and PathwaysResearch ArticlePLoS ONE
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Genetic architecture of circulating lipid levels

2011

Serum concentrations of low-density lipoprotein cholesterol (LDL-C), high-density lipoprotein cholesterol (HDL-C), triglycerides (TGs) and total cholesterol (TC) are important heritable risk factors for cardiovascular disease. Although genome-wide association studies (GWASs) of circulating lipid levels have identified numerous loci, a substantial portion of the heritability of these traits remains unexplained. Evidence of unexplained genetic variance can be detected by combining multiple independent markers into additive genetic risk scores. Such polygenic scores, constructed using results from the ENGAGE Consortium GWAS on serum lipids, were applied to predict lipid levels in an independen…

Netherlands Twin Register (NTR)MaleRiskQuantitative Trait LociPopulationBlood lipidsGenome-wide association study030204 cardiovascular system & hematologyBiologyQuantitative trait locusPolymorphism Single NucleotideArticle03 medical and health sciences0302 clinical medicineLipid Metabolism/geneticsGeneticSDG 3 - Good Health and Well-beingModelsGenetic variation/dk/atira/pure/keywords/cohort_studies/netherlands_twin_register_ntr_GeneticsHumansPolymorphismeducationSerum lipids; polygenic; genome-wide association; polygenic score; pathway analysisGenetics (clinical)030304 developmental biologyGenetic associationGenetics0303 health scienceseducation.field_of_studyModels GeneticLipids/bloodMetabolic Networks and Pathways/geneticsta3141Lipid metabolismSingle Nucleotideta3142Lipid MetabolismLipidsGenetic architecture3. Good healthPhenotype/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingFemalelipids (amino acids peptides and proteins)Quantitative Trait Loci/geneticsMetabolic Networks and PathwaysGenome-Wide Association StudyEuropean Journal of Human Genetics
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Comparative Genomics of Blattabacterium cuenoti: The Frozen Legacy of an Ancient Endosymbiont Genome

2013

Many insect species have established long-term symbiotic relationships with intracellular bacteria. Symbiosis with bacteria has provided insects with novel ecological capabilities, which have allowed them colonize previously unexplored niches. Despite its importance to the understanding of the emergence of biological complexity, the evolution of symbiotic relationships remains hitherto a mystery in evolutionary biology. In this study, we contribute to the investigation of the evolutionary leaps enabled by mutualistic symbioses by sequencing the genome of Blattabacterium cuenoti, primary endosymbiont of the omnivorous cockroach Blatta orientalis, and one of the most ancient symbiotic associa…

NitrogenCockroachesGenomenitrogen metabolismEvolution MolecularBlattabacteriumSymbiosisMastotermes darwiniensisPhylogeneticsGeneticsAnimalsSymbiosisBlattabacterium endosymbiontgenome reductionEcology Evolution Behavior and SystematicsPhylogenyComparative genomicsureasebiologyBase SequenceEcologyBacteroidetesBlattafungiPan-genomebiology.organism_classificationEvolutionary biologyBlatta orientalispan-genomeGenome BacterialMetabolic Networks and PathwaysResearch Article
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Complete sequencing of Novosphingobium sp. PP1Y reveals a biotechnologically meaningful metabolic pattern.

2014

Background Novosphingobium sp. strain PP1Y is a marine α-proteobacterium adapted to grow at the water/fuel oil interface. It exploits the aromatic fraction of fuel oils as a carbon and energy source. PP1Y is able to grow on a wide range of mono-, poly- and heterocyclic aromatic hydrocarbons. Here, we report the complete functional annotation of the whole Novosphingobium genome. Results PP1Y genome analysis and its comparison with other Sphingomonadal genomes has yielded novel insights into the molecular basis of PP1Y’s phenotypic traits, such as its peculiar ability to encapsulate and degrade the aromatic fraction of fuel oils. In particular, we have identified and dissected several highly …

NovosphingobiumSphingomonadDe novo sequencing; Novosphingobium sp. PP1Y; Sphingomonads; Aromatic pollutant compounds/bioremediationAromatic pollutant compoundComputational biologyNovosphingobium sp. PP1YAromatic pollutant compounds/bioremediationGenomeSphingomonadsDNA sequencingDe novo sequencingbioremediationNext generation sequencingGeneticsPhylogenyWhole genome sequencingGeneticschemistry.chemical_classificationbiologyHigh-Throughput Nucleotide SequencingQuorum SensingSequence Analysis DNAbiology.organism_classificationSphingomonadaceaeSphingomonadaceaeQuorum sensingBiodegradation EnvironmentalchemistryGenes BacterialEnergy sourceAromatic hydrocarbonMetabolic Networks and PathwaysResearch ArticleBiotechnology
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The human peroxisome in health and disease: The story of an oddity becoming a vital organelle

2013

Abstract Since the first report by Rhodin in 1954, our knowledge on mammalian microbodies/peroxisomes has known several periods. An initial two decades period (1954–1973) has contributed to the biochemical individualisation of peroxisomes as a new class of subcellular organelles (de Duve, 1965). The corresponding research period failed to define a clear role of mammalian peroxisomes in vital functions and intermediary metabolism, explaining why feeling that peroxisomes might be in the human cell oddities has prevailed during several decades. The period standing from 1973 to nowadays has progressively removed this cell oddity view of peroxisomes by highlighting vital function and metabolic r…

Peroxisome Proliferator-Activated ReceptorsDiseaseBiologyCell FractionationMicrobodiesBiochemistryPeroxisomal DisordersOrganellePeroxisomal disorderCentrifugation Density GradientPeroxisomesmedicineAnimalsHumansMicrobodyZellweger SyndromeOrganelle envelopeFatty AcidsGeneral MedicinePeroxisomeLipid Metabolismmedicine.diseaseCell biologyBiochemistryNuclear receptorMetabolic Networks and PathwaysFunction (biology)Biochimie
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Pho85 and PI(4,5)P(2) regulate different lipid metabolic pathways in response to cold

2019

Lipid homeostasis allows cells to adjust membrane biophysical properties in response to changes in environmental conditions. In the yeast Saccharomyces cerevisiae, a downward shift in temperature from an optimal reduces membrane fluidity, which triggers a lipid remodeling of the plasma membrane. How changes in membrane fluidity are perceived, and how the abundance and composition of different lipid classes is properly balanced, remain largely unknown. Here, we show that the levels of phosphatidylinositol 4,5-bisphosphate [PI(4,5)P2], the most abundant plasma membrane phosphoinositide, drop rapidly in response to a downward shift in temperature. This change triggers a signaling cascade trans…

Phosphatidylinositol 45-DiphosphateSaccharomyces cerevisiae ProteinsMembrane FluiditySphingoid basesAcclimatizationOrm2PhospholipidSaccharomyces cerevisiaePhosphoinositideTriacylglycerideSphingolipidArticle03 medical and health scienceschemistry.chemical_compoundGlycogen Synthase Kinase 3Gene Expression Regulation FungalMembrane fluidityLow temperatureInositolPhosphatidylinositolProtein kinase AMolecular Biology1-IP7030304 developmental biology0303 health sciencesChemistry030302 biochemistry & molecular biologyCell MembraneCell BiologyLipid MetabolismSphingolipidCyclin-Dependent KinasesCell biologyTORC2-Pkh1-Ypk1 signaling moduleCold TemperatureCytosolMetabolic pathwayPhospholipidMetabolic Networks and PathwaysSignal Transduction
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Metabolic flux understanding of Pichia pastoris grown on heterogenous culture media

2014

[EN] Within the emergent field of Systems Biology, mathematical models obtained from physical chemical laws (the so-called first principles-based models) of microbial systems are employed to discern the principles that govern cellular behaviour and achieve a predictive understanding of cellular functions. The reliance on this biochemical knowledge has the drawback that some of the assumptions (specific kinetics of the reaction system, unknown dynamics and values of the model parameters) may not be valid for all the metabolic possible states of the network. In this uncertainty context, the combined use of fundamental knowledge and data measured in the fermentation that describe the behaviour…

Principal Component AnalysisbiologyMathematical modelManufacturing processComputer scienceProcess Chemistry and TechnologySystems biologyMonte Carlo samplingESTADISTICA E INVESTIGACION OPERATIVACellular functionsMetabolic networkMetabolic networkMissing-data methods for Exploratory Data AnalysisContext (language use)biology.organism_classificationINGENIERIA DE SISTEMAS Y AUTOMATICAComputer Science ApplicationsAnalytical ChemistryPichia pastorisEconometricsBiochemical engineeringPossibilistic consistency analysisFlux (metabolism)SpectroscopySoftware
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A Genomic, Transcriptomic and Proteomic Look at the GE2270 Producer Planobispora rosea, an Uncommon Actinomycete.

2015

We report the genome sequence of Planobispora rosea ATCC 53733, a mycelium-forming soil-dweller belonging to one of the lesser studied genera of Actinobacteria and producing the thiopeptide GE2270. The P. rosea genome presents considerable convergence in gene organization and function with other members in the family Streptosporangiaceae, with a significant number (44%) of shared orthologs. Patterns of gene expression in P. rosea cultures during exponential and stationary phase have been analyzed using whole transcriptome shotgun sequencing and by proteome analysis. Among the differentially abundant proteins, those involved in protein metabolism are particularly represented, including the G…

ProteomeSequence analysislcsh:MedicineGenomicsBiologyGenomePeptides Cyclic03 medical and health sciencesBacterial ProteinsPlanobispora roseaActinomycetalesGenomic libraryAgricultural and Biological Sciences (all); Biochemistry Genetics and Molecular Biology (all); Medicine (all)lcsh:ScienceGeneProteomic Look030304 developmental biologyWhole genome sequencingGenetics0303 health sciencesMultidisciplinaryBiochemistry Genetics and Molecular Biology (all)030306 microbiologyShotgun sequencingSequence Analysis RNAMedicine (all)lcsh:RUncommon Actinomycete.High-Throughput Nucleotide SequencingGenomicsRNA BacterialThiazolesGlucoseTranscriptomicAgricultural and Biological Sciences (all)Multigene FamilyProteomeGenomiclcsh:QTranscriptomeGenome BacterialMetabolic Networks and PathwaysResearch ArticlePLoS ONE
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