Search results for "Lipid metabolism"

showing 10 items of 359 documents

Changes in lipid and carotenoid metabolism in Chlamydomonas reinhardtii during induction of CO2-concentrating mechanism: Cellular response to low CO2…

2020

Photosynthetic organisms strictly depend on CO2 availability and the CO2:O2 ratio, as both CO2/O2 compete for catalytic site of Rubisco. Green alga Chlamydomonas reinhardtii, can overcome CO2 shortage by inducing CO2-concentrating mechanism (CCM). Cells transferred to low-CO2 are subjected to light-driven oxidative stress due to decrease in the electron sink. Response to environmental perturbations is mediated to some extent by changes in the lipid and carotenoid metabolism. We thus hypothesize that when cells are challenged with changes in CO2 availability, changes in the lipidome and carotenoids profile occur. These changes expected to be transient, when CCM is activated, CO2 limitation w…

0106 biological sciences0301 basic medicineLow-CO stressChlamydomonas reinhardtiimedicine.disease_cause01 natural sciences03 medical and health sciencesCarotenogenesisLipid dropletmedicineBetaine lipidsCarotenoidchemistry.chemical_classificationCCMbiologyRuBisCOChlamydomonasBiochemistry and Molecular BiologyLipid metabolismLipidomebiology.organism_classificationLipid droplets030104 developmental biologyMicrobiology (Microbiology in the medical area to be 30109)chemistryBiochemistryXanthophyllbiology.proteinAgronomy and Crop ScienceOxidative stressBiokemi och molekylärbiologi010606 plant biology & botany
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Exposure to environmental radionuclides is associated with altered metabolic and immunity pathways in a wild rodent

2019

Wildlife inhabiting environments contaminated by radionuclides face putative detrimental effects of exposure to ionizing radiation, with biomarkers such as an increase in DNA damage and/or oxidative stress commonly associated with radiation exposure. To examine the effects of exposure to radiation on gene expression in wildlife, we conducted a de novo RNA sequencing study of liver and spleen tissues from a rodent, the bank vole Myodes glareolus. Bank voles were collected from the Chernobyl Exclusion Zone (CEZ), where animals were exposed to elevated levels of radionuclides, and from uncontaminated areas near Kyiv, Ukraine. Counter to expectations, we did not observe a strong DNA damage resp…

0106 biological sciences0301 basic medicineRodentDNA Repairmedicine.disease_cause01 natural sciencessäteilybiologiachemistry.chemical_compoundRadiation IonizingMyodes glareolusstable isotopepollutionaineenvaihduntaBeta oxidationradionuclides2. Zero hungerbiologyArvicolinaeFatty AcidsRadiation ExposureRNAseqBank voleMolecular AdaptationLiverimmuunijärjestelmäOriginal ArticleUkraineOxidation-ReductionmetsämyyräDNA damageDNA repair010603 evolutionary biologyMicrobiology03 medical and health sciencesImmunitybiology.animalGeneticsmedicineAnimalsEcology Evolution Behavior and SystematicsRadioisotopesFatty acid metabolismLipid metabolismDNAbiology.organism_classificationLipid MetabolismOxidative Stress030104 developmental biologychemistryChernobyl Nuclear Accident13. Climate actionImmune SystemRNAORIGINAL ARTICLESOxidative stressSpleenDNA DamageMutagens
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Retroconversion of docosapentaenoic acid (n-6): an alternative pathway for biosynthesis of arachidonic acid in Daphnia magna.

2013

The aim of this study was to assess metabolic pathways for arachidonic acid (20:4n-6) biosynthesis in Daphnia magna. Neonates of D. magna were maintained on [13C] enriched Scenedesmus obliquus and supplemented with liposomes that contained separate treatments of unlabeled docosapentaenoic acid (22:5n-6), 20:4n-6, linoleic acid (18:2n-6) or oleic acid (18:1n-9). Daphnia in the control treatment, without any supplementary fatty acids (FA) containing only trace amounts of 20:4n-6 (~0.3 % of all FA). As expected, the highest proportion of 20:4n-6 (~6.3 %) was detected in Daphnia that received liposomes supplemented with this FA. Higher availability of 18:2n-6 in the diet increased the proportio…

0106 biological sciencesLinoleic acidDaphnia magna01 natural sciencesBiochemistryDaphnia03 medical and health scienceschemistry.chemical_compoundAnimalsreproductive and urinary physiology030304 developmental biologychemistry.chemical_classification0303 health sciencesArachidonic Acidbiology010604 marine biology & hydrobiologyfungiOrganic ChemistryDocosapentaenoic Acid n-6Cell Biologybiology.organism_classificationLipid MetabolismBiosynthetic PathwaysOleic acidBiochemistrychemistryDaphniaLiposomesFatty Acids UnsaturatedArachidonic acidDocosapentaenoic acidHydrogenationPolyunsaturated fatty acidLipids
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Collisional mechanism of ligand release by Bombyx mori JHBP, a member of the TULIP / Takeout family of lipid transporters.

2020

International audience; Juvenile hormones (JHs) regulate important processes in insects, such as postembryonic development and reproduction. In the hemolymph of Lepidoptera, these lipophilic sesquiterpenic hormones are transported from their site of synthesis to target tissues by high affinity carriers, the juvenile hormone binding proteins (JHBPs). Lepidopteran JHBPs belong to a recently uncovered, yet very ancient family of proteins sharing a common lipid fold (TULIP domain) and involved in shuttling various lipid ligands. One important, but poorly understood aspect of JHs action, is the mechanism of hormone transfer to or through the plasma membranes of target cells. Since many membrane-…

0106 biological sciencesPhospholipidMothsLigands01 natural sciencesBiochemistryManduca sexta03 medical and health scienceschemistry.chemical_compoundProtein structureBombyx moriAnimalsMolecular Biology030304 developmental biology0303 health sciencesJHBPbiologyLigandTakeout-like proteinsfungiBombyx moriJuvenile HormoneIsothermal titration calorimetryBiological Transportbiology.organism_classificationBombyxLipid MetabolismTULIP domain010602 entomologyMembraneBiochemistrychemistryManduca sextaInsect ScienceJuvenile hormone[SDE]Environmental SciencesInsect ProteinsCarrier Proteins
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Membrane glycerolipid remodeling triggered by nitrogen and phosphorus starvation in Phaeodactylum tricornutum.

2014

International audience; Diatoms constitute a major phylum of phytoplankton biodiversity in ocean water and freshwater ecosystems. They are known to respond to some chemical variations of the environment by the accumulation of triacylglycerol, but the relative changes occurring in membrane glycerolipids have not yet been studied. Our goal was first to define a reference for the glycerolipidome of the marine model diatom Phaeodactylum tricornutum, a necessary prerequisite to characterize and dissect the lipid metabolic routes that are orchestrated and regulated to build up each subcellular membrane compartment. By combining multiple analytical techniques, we determined the glycerolipid profil…

0106 biological sciencesPhysiologyPlant ScienceThylakoids01 natural sciencesPhaeodactylum tricornutumTranscriptomeMGDGNutrientnutrient starvationLipids metabolismSettore BIO/04 - Fisiologia VegetaleDigalactosyldiacylglycerolPhospholipids0303 health sciencesbiologyNitrogen starvationmicroalgaeMonogalactosyldiacyglycerolPhosphorusArticlesAdaptation PhysiologicalBiochemistryThylakoidSulfoquinovosyldiacylglycerollipids (amino acids peptides and proteins)DGDGNitrogenchemistry.chemical_elementlipidsMembrane Lipids03 medical and health sciencesSQDG[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyGenetics[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology14. Life underwaterPhaeodactylum tricornutumTriglycerides030304 developmental biologyDiatomsMembranesGene Expression ProfilingPhosphorusfungiPhosphorus starvationGlycerolipidsLipid metabolismmetabolic pathwaybiology.organism_classificationMetabolic pathwayPhosphatidylcholineDiatomchemistryPhytoplanktonLipidomics010606 plant biology & botany
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Interactive effects of aging and aerobic capacity on energy metabolism-related metabolites of serum, skeletal muscle, and white adipose tissue

2021

ABSTRACTAerobic capacity is a strong predictor of longevity. With aging, aerobic capacity decreases concomitantly with changes in whole body metabolism leading to increased disease risk. To address the role of aerobic capacity, aging and their interaction on metabolism, we utilized rat models of low and high intrinsic aerobic capacity (LCRs/HCRs) and assessed the metabolomics of serum, muscle, and white adipose tissue (WAT). We compared LCRs and HCRs at two time points: Young rats were sacrificed at 9 months, and old rats were sacrificed at 21 months. Targeted and semi-quantitative metabolomics analysis was performed on ultra-pressure Liquid Chromatography Tandem Mass Spectrometry (UPLC-MS)…

0301 basic medicineAgingWhite adipose tissue030204 cardiovascular system & hematologychemistry.chemical_compound0302 clinical medicineTandem Mass SpectrometryMetabolitesaineenvaihduntametabolitesALL-CAUSE MORTALITY2. Zero hungerchemistry.chemical_classification0303 health sciencesmetabolomicsAmino acidmedicine.anatomical_structureCARDIOVASCULAR-DISEASEOBESITYaerobinen suorituskykyOriginal ArticleCARDIORESPIRATORY FITNESSARTIFICIAL SELECTIONmedicine.medical_specialtyAdipose Tissue WhiteEXERCISErasva-aineenvaihdunta03 medical and health sciencesMetabolomicsFATNESSAerobic capacityInternal medicinemedicineAnimalsMetabolomicsBeta (finance)Muscle SkeletalAerobic capacity030304 developmental biologyAMINO-ACID-METABOLISMFatty acid metabolismagingSkeletal muscleLipid metabolismCardiorespiratory fitnessMetabolismRatsaerobic capacityikääntyminen030104 developmental biologyEndocrinologyPHYSICAL-ACTIVITYchemistryFUEL SELECTIONaineenvaihduntatuotteet3111 Biomedicinekoe-eläinmallitGeriatrics and GerontologyEnergy MetabolismChromatography Liquid
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Hepatocyte vitamin D receptor regulates lipid metabolism and mediates experimental diet-induced steatosis.

2015

Background & Aims The pathogenesis and progression of non-alcoholic fatty liver disease (NAFLD) is still incompletely understood. Several nuclear receptors play a role in liver lipid metabolism and can promote hepatosteatosis, but the possible role of vitamin D receptor (VDR) in NAFLD has not been investigated. Methods The expression of liver VDR was investigated in apolipoprotein E knockout ( apoE −/− ) mice on a high fat diet, in wild-type mice on methionine and choline deficient diet and in NAFLD patients with hepatosteatosis and non-alcoholic steatohepatitis. The relevance of VDR was assessed in apoE −/− mice by deletion of VDR or paricalcitol treatment and in human HepG2 cells by VDR t…

0301 basic medicineApolipoprotein Emedicine.medical_specialtyCD36Retinoid X receptorDiet High-FatCalcitriol receptor03 medical and health sciencesMiceNon-alcoholic Fatty Liver DiseaseInternal medicinemedicineAnimalsHumansHepatologybiologyFatty liverLipid metabolismmedicine.diseaseLipid MetabolismMice Inbred C57BLDisease Models Animal030104 developmental biologyEndocrinologyLiverbiology.proteinHepatocytesReceptors Calcitriollipids (amino acids peptides and proteins)SteatosisSteatohepatitisJournal of hepatology
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Cardiolipin synthesis in brown and beige fat mitochondria is essential for systemic energy homeostasis

2018

Summary Activation of energy expenditure in thermogenic fat is a promising strategy to improve metabolic health, yet the dynamic processes that evoke this response are poorly understood. Here we show that synthesis of the mitochondrial phospholipid cardiolipin is indispensable for stimulating and sustaining thermogenic fat function. Cardiolipin biosynthesis is robustly induced in brown and beige adipose upon cold exposure. Mimicking this response through overexpression of cardiolipin synthase (Crls1) enhances energy consumption in mouse and human adipocytes. Crls1 deficiency in thermogenic adipocytes diminishes inducible mitochondrial uncoupling and elicits a nuclear transcriptional respons…

0301 basic medicineBiologiaBioenergeticsChop-10 ; Crls1 ; Beige Adipose ; Brown Adipose ; Cardiolipin ; Insulin Resistance ; Lipid Metabolism ; Mitochondria ; Phospholipids ; ThermogenesisPhysiologyGlucose uptakeAdipose tissueTransferases (Other Substituted Phosphate Groups)MitochondrionEnergy homeostasischemistry.chemical_compoundMice0302 clinical medicineAdipose Tissue Browninsulin resistancelipid metabolismCardiolipinAdipocytesCells CulturedThermogenesisthermogenesisCell biologyMitochondriamitochondriaCHOP-10lipids (amino acids peptides and proteins)BioquímicaCardiolipinsbeige adiposeArticle03 medical and health sciencesInsulin resistanceCRLS1medicineAnimalsHumansMolecular Biologyphospholipidsbrown adiposeMembrane ProteinsCell BiologyAdipose Tissue Beigemedicine.diseaseMice Inbred C57BL030104 developmental biologychemistrycardiolipinEnergy MetabolismThermogenesis030217 neurology & neurosurgery
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Low level activity thresholds for changes in NMR biomarkers and genes in high risk subjects for type 2 diabetes

2017

AbstractOur objectives were to determine if there are quantitative associations between amounts and intensities of physical activities (PA) on NMR biomarkers and changes in skeletal muscle gene expressions in subjects with high risk for type 2 diabetes (T2D) performing a 3-month PA intervention. We found that PA was associated with beneficial biomarker changes in a factor containing several VLDL and HDL subclasses and lipids in principal component analysis (P = <0.01). Division of PA into quartiles demonstrated significant changes in NMR biomarkers in the 2nd - 4th quartiles compared to the 1st quartile representing PA of less than 2850 daily steps (P = 0.0036). Mediation analysis of PA-…

0301 basic medicineBlood GlucoseMaleVery low-density lipoprotein[SDV]Life Sciences [q-bio]prévention des maladieslcsh:MedicineAdipose tissueMuscle ProteinsType 2 diabetes030204 cardiovascular system & hematologyOverweight0302 clinical medicinemaladie cardiovasculairelcsh:ScienceComputingMilieux_MISCELLANEOUSBODY-WEIGHT CHANGEMultidisciplinaryMiddle AgedMagnetic Resonance Imaging[SDV] Life Sciences [q-bio]ADIPOSE-TISSUEBiomarker (medicine)SKELETAL-MUSCLEFemalemedicine.symptombiomarqueurINSULIN-RESISTANCE ATHEROSCLEROSISAutre (Sciences du Vivant)Adultmedicine.medical_specialtydiabète de type 2expression géniqueCarbohydrate metabolismALL-CAUSEArticle03 medical and health sciencesMedical researchLIPID-METABOLISMInternal medicineDiabetes mellitusmedicineAPOLIPOPROTEIN-D POLYMORPHISMHumansObesityNUCLEAR-MAGNETIC-RESONANCEMuscle SkeletalExercisebusiness.industryMORTALITYlcsh:RLipid metabolismsurpoidsLIPOPROTEIN PARTICLE-SIZEmedicine.disease030104 developmental biologyEndocrinologyPHYSICAL-ACTIVITYDiabetes Mellitus Type 2Gene Expression Regulationlcsh:QbusinessBiomarkers
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Angiotensin II type 1 receptor antagonists in animal models of vascular, cardiac, metabolic and renal disease

2016

AbstractWe have reviewed the effects of angiotensin II type 1 receptor antagonists (ARBs) in various animal models of hypertension, atherosclerosis, cardiac function, hypertrophy and fibrosis, glucose and lipid metabolism, and renal function and morphology. Those of azilsartan and telmisartan have been included comprehensively whereas those of other ARBs have been included systematically but without intention of completeness. ARBs as a class lower blood pressure in established hypertension and prevent hypertension development in all applicable animal models except those with a markedly suppressed renin–angiotensin system; blood pressure lowering even persists for a considerable time after d…

0301 basic medicineBlood Pressure030204 cardiovascular system & hematologyKidneyurologic and male genital diseasesBenzoatesAnimals Genetically ModifiedRenin-Angiotensin SystemGene Knockout Techniques0302 clinical medicineAzilsartanPharmacology (medical)TelmisartanOxadiazolesKidneybiologyStrokemedicine.anatomical_structureCardiovascular DiseasesHypertensionDrug Therapy Combinationmedicine.drugmedicine.medical_specialty03 medical and health sciencesMetabolic DiseasesCulture TechniquesInternal medicineRenin–angiotensin systemmedicineAnimalsHumansAntihypertensive AgentsPharmacologyAngiotensin II receptor type 1business.industryAngiotensin-converting enzymeAtherosclerosisLipid Metabolismmedicine.diseaseDisease Models AnimalGlucose030104 developmental biologyBlood pressureEndocrinologyPathophysiology of hypertensionbiology.proteinBenzimidazolesEndothelium VascularTelmisartanbusinessAngiotensin II Type 1 Receptor BlockersPharmacology & Therapeutics
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