Search results for "Lipid biosynthesis"

showing 10 items of 12 documents

Structure and function of the vacuolar Ccc1/VIT1 family of iron transporters and its regulation in fungi

2020

Iron is an essential micronutrient for most living beings since it participates as a redox active cofactor in many biological processes including cellular respiration, lipid biosynthesis, DNA replication and repair, and ribosome biogenesis and recycling. However, when present in excess, iron can participate in Fenton reactions and generate reactive oxygen species that damage cells at the level of proteins, lipids and nucleic acids. Organisms have developed different molecular strategies to protect themselves against the harmful effects of high concentrations of iron. In the case of fungi and plants, detoxification mainly occurs by importing cytosolic iron into the vacuole through the Ccc1/V…

ISC Iron-sulfur lusterCS Consistency scoreCcc1Ribosome biogenesisVacuoleReview ArticleYRE Yap response elementsBiochemistryBiotecnologia0302 clinical medicineStructural BiologyCg Candida glabrata0303 health sciencesMAFFT Multiple Alignment using Fast Fourier TransformNRAMP Natural Resistance-Associated Macrophage ProteinbiologyVIT1ChemistryMBD Metal-binding domainPlantsComputer Science ApplicationsBiochemistry030220 oncology & carcinogenesisCRD Cysteine-rich domainEg Eucalyptus grandisIron detoxificationBiotechnologyCBC CCAAT-binding core complexlcsh:BiotechnologySaccharomyces cerevisiaeVTL Vacuolar iron transporter-likeBiophysicsVIT Vacuolar iron transporterbZIP basic leucine-zipper03 medical and health sciencesFongsLipid biosynthesislcsh:TP248.13-248.65GeneticsFe IronIron transportTranscription factor030304 developmental biologyComputingMethodologies_COMPUTERGRAPHICSBLOSUM BLOcks SUbstitution MatrixTMD Transmembrane domainML Maximum-likelihoodIron regulationDNA replicationFungibiology.organism_classificationYeastYeastMetabolic pathwayH HelixHap Heme activator proteinVacuoleROS Reactive oxygen speciesFerroComputational and Structural Biotechnology Journal
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A genome-wide transcriptional study reveals that iron deficiency inhibits the yeast TORC1 pathway

2019

Iron is an essential micronutrient that participates as a cofactor in a broad range of metabolic processes including mitochondrial respiration, DNA replication, protein translation and lipid biosynthesis. Adaptation to iron deficiency requires the global reorganization of cellular metabolism directed to optimize iron utilization. The budding yeast Saccharomyces cerevisiae has been widely used to characterize the responses of eukaryotic microorganisms to iron depletion. In this report, we used a genomic approach to investigate the contribution of transcription rates to the modulation of mRNA levels during adaptation of yeast cells to iron starvation. We reveal that a decrease in the activity…

IronSaccharomyces cerevisiaeBiophysicsRibosome biogenesisSaccharomyces cerevisiaeMechanistic Target of Rapamycin Complex 1Biochemistry03 medical and health sciencesStructural BiologyRibosomal proteinTranscription (biology)Gene Expression Regulation FungalLipid biosynthesisGeneticsHumansRNA MessengerPhosphorylationMolecular BiologyGene030304 developmental biology0303 health sciencesAnemia Iron-Deficiencybiology030306 microbiologyChemistryIron deficiencyRNA polymerasesRNATORbiology.organism_classificationAdaptation PhysiologicalYeastCell biologyDNA-Binding ProteinsGene Expression RegulationProtein BiosynthesisSignal transductionTranscription
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The role of lipid metabolism in the acquisition of desiccation tolerance inCraterostigma plantagineum: a comparative approach

2013

Summary Dehydration leads to different physiological and biochemical responses in plants. We analysed the lipid composition and the expression of genes involved in lipid biosynthesis in the desiccation-tolerant plant Craterostigma plantagineum. A comparative approach was carried out with Lindernia brevidens (desiccation tolerant) and two desiccation-sensitive species, Lindernia subracemosa and Arabidopsis thaliana. In C. plantagineum the total lipid content remained constant while the lipid composition underwent major changes during desiccation. The most prominent change was the removal of monogalactosyldiacylglycerol (MGDG) from the thylakoids. Analysis of molecular species composition rev…

ved/biology.organism_classification_rank.speciesArabidopsisResurrection plantPlant ScienceBiologyDesiccation tolerancechemistry.chemical_compoundStress PhysiologicalTandem Mass SpectrometryLipid biosynthesisGeneticsDesiccationDiacylglycerol kinasePhospholipase Dved/biologyGalactolipidsHydrolysisLipid metabolismCell BiologyPhosphatidic acidLipid MetabolismchemistryBiochemistryCraterostigmaEmbryophytalipids (amino acids peptides and proteins)DesiccationThe Plant Journal
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Serum metabolites in non-alcoholic fatty-liver disease development or reversion; a targeted metabolomic approach within the PREDIMED trial

2017

Background Limited prospective studies have examined changes in non-alcoholic fatty-liver disease (NAFLD) related serum-metabolites and none the effects of NAFLD-reversion. We aimed to evaluate whether perturbations in metabolites indicate predisposition to NAFLD development and to assess the effects of NAFLD reversion on metabolite profiles. Methods A targeted liquid-chromatography tandem mass-spectrometry metabolic profiling (n = 453 metabolites) approach was applied, using serum from 45 subjects of the PREDIMED study, at baseline and after a median 3.8-year follow-up. NAFLD was determined using the hepatic steatosis index; with three groups classified and studied: Group 1, not characteri…

0301 basic medicinemedicine.medical_specialtyEndocrinology Diabetes and MetabolismMetaboliteMedicine (miscellaneous)lcsh:TX341-641Clinical nutritionBiology03 medical and health scienceschemistry.chemical_compoundFetge--MalaltiesInternal medicineLipid biosynthesisHepatic lipotoxicitymedicineMetabolomicsProspective cohort studylcsh:RC620-627Nutrition and DieteticsFatty acid metabolismResearchFatty livernutritional and metabolic diseasesmedicine.diseasedigestive system diseaseslcsh:Nutritional diseases. Deficiency diseases030104 developmental biologyEndocrinologychemistryLipotoxicityFatty acid metabolismSteatosislcsh:Nutrition. Foods and food supplyNon-alcoholic fatty liver diseaseNutrition & Metabolism
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Arabidopsis Serine Decarboxylase 1 (SDC1) in Phospholipid and Amino Acid Metabolism

2018

Arabidopsis thaliana serine decarboxylase 1 (SDC1) catalyzes conversion of serine to ethanolamine, the first reaction step of phosphatidylcholine and phosphatidylethanolamine biosynthesis. However, an involvement of SDC1 in amino acid metabolism remains elusive despite that serine is the substrate of SDC1. Here, we showed that SDC1 localizes in mitochondria although phosphatidylcholine and phosphatidylethanolamine are known to be produced in the endoplasmic reticulum (ER). Moreover, we found that overexpression of SDC1 decreased levels of amino acid compounds derived from mitochondrial tricarboxylic acid cycle. These results suggest that mitochondria-localized SDC1 plays an important role i…

0301 basic medicinechemistry.chemical_classificationPhosphatidylethanolamineArabidopsis thalianaEndoplasmic reticulumPhospholipidPlant ScienceMetabolismlcsh:Plant cultureAmino acidSerineCitric acid cycle03 medical and health scienceschemistry.chemical_compound030104 developmental biologychemistryBiochemistryBiosynthesislcsh:SB1-1110phospholipid biosynthesisserine decarboxylaseglycerolipid metabolismphospholipidOriginal ResearchFrontiers in Plant Science
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Topical bioassay of Oberon® on Drosophila melanogaster pupae: delayed effects on ovarian proteins, cuticular hydrocarbons and sexual behaviour

2021

International audience; Spiromesifen (Oberon? 240 SC; concentrated solution; Bayer CropScience, Germany) a pesticide derived from spirocyclic tetronic acids, acts mainly though blocking lipid biosynthesis via acetyl-CoA carboxylase. However, its mode of action requires further analyses. This study aims to evaluate the sublethal effects of spiromesifen on the fruit fly Drosophila melanogaster. The treatment was carried out by topical application on newly moulted pupae using two concentrations (LD10 = 21.45 and LD25 = 39.53 ?g a.i./pupa). Our results showed that the developmental duration of larvae and pupae were not significantly affected by treatment. However, spiromesifen caused delayed ef…

0106 biological sciencesanimal structuresprogeny010603 evolutionary biology01 natural sciencesOberonLipid biosynthesisBioassaycomputer.programming_languagebiology010604 marine biology & hydrobiologycuticular hydrocarbonsfungisexual behaviour[SDV.BDLR]Life Sciences [q-bio]/Reproductive BiologyPesticidebiology.organism_classificationspiromesifenproteinsPupaBiochemistryAnimal Science and ZoologyhexapodaDrosophila melanogasterdelayed effectscomputerDevelopmental Biology
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Culture Conditions Affect Antioxidant Production, Metabolism and Related Biomarkers of the Microalgae Phaeodactylum tricornutum

2022

Phaeodactylum tricornutum (Bacillariophyta) is a worldwide-distributed diatom with the ability to adapt and survive in different environmental habitats and nutrient-limited conditions. In this research, we investigated the growth performance, the total lipids productivity, the major categories of fatty acids, and the antioxidant content in P. tricornutum subjected for 15 days to nitrogen deprivation (N−) compared to standard culture conditions (N+). Furthermore, genes and pathways related to lipid biosynthesis (i.e., glucose-6-phosphate dehydrogenase, acetyl-coenzyme A carboxylase, citrate synthase, and isocitrate dehydrogenase) and photosynthetic activity (i.e., ribulose-1,5-bisphosp…

2. Zero hungerphotosynthesisPhysiologyClinical Biochemistrylipid biosynthesisantioxidant activityCell Biologynitrogen stresslipid biosynthesiBiochemistryPhaeodactylum tricornutumAntioxidantsphotosynthesiAlguesSettore AGR/20 - Zoocolturenitrogen stregene expressionSettore BIO/06 - Anatomia Comparata E CitologiaMolecular Biology<i>Phaeodactylum tricornutum</i>; nitrogen stress; gene expression; lipid biosynthesis; photosynthesis; antioxidant activity
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Gene expression is stronger associated with behaviour than with age and fertility in ant workers

2018

AbstractThe ecological success of social insects is based on division of labour, not only between queens and workers, but also among workers. Whether a worker tends the brood or forages is strongly influenced by age, fertility and nutritional status, with brood carers being younger, more fecund and corpulent. Here, we experimentally disentangle behaviour from age and fertility inTemnothorax longispinosusant workers and analyse how these parameters are linked to whole-body gene expression. Our transcriptome analysis reveals four times more genes associated with behaviour than with age and only few fertility-associated genes. Brood carers exhibited an upregulation of genes involved in lipid b…

media_common.quotation_subjectfungiNutritional statusFertilityBiologyANTBroodTranscriptomeLipid biosynthesisGene expressionbehavior and behavior mechanismsDivision of labourreproductive and urinary physiologyDemographymedia_common
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Enhanced platelet thromboxane synthesis and reduced macrophage-dependent fibrinolytic activity related to oxidative stress in oral contraceptive-trea…

1996

Abstract In previous studies conducted in rats and in women, we have shown that oral contraceptive (OC) administration induced a platelet hyperaggregation simultaneously with an increased platelet lipid biosynthesis which might be related to lipid peroxidation. In the present study, we specifically studied the arachidonic acid and the fibrinolytic pathways in relation to the fatty acid composition in female rats treated for 6 weeks with OC (ethinyl estradiol plus lynestrenol). We found that platelets of treated animals were not only hyper-responsive to thrombin and ADP, but also to sodium arachidonate. In addition, the results of the thrombin-induced release of labeled arachidonic acid pre-…

Blood Plateletsmedicine.medical_specialtyErythrocytesPlatelet AggregationThromboxaneRadioimmunoassayLipid peroxidationRats Sprague-Dawleychemistry.chemical_compoundThromboxane A2Internal medicineLipid biosynthesisThromboembolismmedicineAnimalsArachidonic AcidFibrinolysisThromboxanesUrokinase-Type Plasminogen ActivatorRecombinant ProteinsRatsThromboxane B2Disease Models AnimalOxidative StressEndocrinology12-Hydroxyheptadecatrienoic acidchemistryMacrophages Peritoneal12-Hydroxyeicosatetraenoic acidArachidonic acidFemaleLipid PeroxidationCardiology and Cardiovascular MedicineContraceptives OralAtherosclerosis
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Pre-imaginal exposure to Oberon® disrupts fatty acid composition, cuticular hydrocarbon profile and sexual behavior in Drosophila melanogaster adults

2021

International audience; Oberon® is a commercial formulation of spiromesifen, a pesticide inhibitor of lipid biosynthesis via acetyl CoA carboxylase, widely used in agricultural crop protection. However, its mode of action requires further analysis. We currently examined the effect of this product on Drosophila melanogaster as a non-target and model organism. Different concentrations of spiromesifen were administered by ingestion (and contact) during pre-imaginal development, and we evaluated its delayed action on adults. Our results suggest that spiromesifen induced insecticidal activity on D. melanogaster. Moreover, spiromesifen treatment significantly increased the duration of larval and …

Male0106 biological sciencesInsecticidesmedicine.medical_specialtyPhysiologyHealth Toxicology and MutagenesisAnimal ScalesBiologyToxicology01 natural sciencesBiochemistrySexual Behavior Animal03 medical and health sciencessexual behaviorInternal medicineLipid biosynthesisMelanogastermedicineAnimalsSpiro CompoundsMode of action030304 developmental biology0303 health sciencesLarvacuticular hydrocarbonsFatty AcidsfungiAcetyl-CoA carboxylasetoxicityLipid metabolismCell BiologyGeneral Medicinebiology.organism_classificationspiromesifenHydrocarbons[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate Zoology010602 entomologyDrosophila melanogasterEndocrinologyToxicityFemaleDrosophila melanogasterComparative Biochemistry and Physiology Part C: Toxicology &amp; Pharmacology
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