Search results for "ATS"

showing 10 items of 6881 documents

Luminal Lipid Regulates CD36 Levels and Downstream Signaling to Stimulate Chylomicron Synthesis

2011

International audience; The membrane glycoprotein CD36 binds nanomolar concentrations of long chain fatty acids (LCFA) and is highly expressed on the luminal surface of enterocytes. CD36 deficiency reduces chylomicron production through unknown mechanisms. In this report, we provide novel insights into some of the underlying mechanisms. Our in vivo data demonstrate that CD36 gene deletion in mice does not affect LCFA uptake and subsequent esterification into triglycerides by the intestinal mucosa exposed to the micellar LCFA concentrations prevailing in the intestine. In rodents, the CD36 protein disappears early from the luminal side of intestinal villi during the postprandial period, but …

CD36 AntigensMaleMTPCD36[SDV]Life Sciences [q-bio]BiochemistryMicrosomal triglyceride transfer proteinMice0302 clinical medicineIntestinal mucosaCricetinaeChylomicronsLipoproteinHypertriglyceridemiaMice Knockout0303 health sciencesMitogen-Activated Protein Kinase 3biologyPostprandial PeriodLipid-binding ProteinIntestineApoB48ERKmedicine.anatomical_structurePostprandialBiochemistrylipids (amino acids peptides and proteins)Apolipoprotein B-48MAP Kinase Signaling SystemEnterocyteCHO CellsChylomicron03 medical and health sciencesCricetulusparasitic diseasesmedicineAnimalsRats WistarMolecular Biology030304 developmental biologyUbiquitinationLipid absorptionLipid metabolismCell BiologyLipid MetabolismRatsEnterocytesMetabolismbiology.proteinApolipoprotein B-48CD36[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryChylomicron
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Fatty Acid Transporter CD36 Mediates Hypothalamic Effect of Fatty Acids on Food Intake in Rats

2013

Subject Areas: carotid arteries; emulsions; fatty acids; gene expression; heparin; hypothalamus; neurons; oxidation.; International audience; Variations in plasma fatty acid (FA) concentrations are detected by FA sensing neurons in specific brain areas such as the hypothalamus. These neurons play a physiological role in the control of food intake and the regulation of hepatic glucose production. Le Foll et al. previously showed in vitro that at least 50% of the FA sensing in ventromedial hypothalamic (VMH) neurons is attributable to the interaction of long chain FA with FA translocase/CD36 (CD36). The present work assessed whether in vivo effects of hypothalamic FA sensing might be partly m…

CD36 AntigensMaleMicrodialysismedicine.medical_specialty[SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyCD36HypothalamusGene Expressionlcsh:MedicineModels BiologicalEating03 medical and health scienceschemistry.chemical_compound0302 clinical medicineIn vivoInternal medicinemedicineAnimalslcsh:SciencePhospholipids030304 developmental biology2. Zero hungerchemistry.chemical_classification0303 health sciencesMultidisciplinaryTriglyceridebiologyFatty Acidslcsh:RNeurosciences[SDV.NEU.NB] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyFatty acidFeeding BehaviorFatty Acid Transport ProteinsRatsSoybean OilTriacsin CEndocrinologychemistryHypothalamus[ SDV.NEU.NB ] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyNeurons and Cognitionbiology.proteinEmulsionslcsh:QProto-Oncogene Proteins c-fos030217 neurology & neurosurgeryEtomoxirResearch ArticlePLoS ONE
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Oro-gustatory perception of dietary lipids and calcium signaling in taste bud cells are altered in nutritionally obesity-prone Psammomys obesus.

2013

Since the increasing prevalence of obesity is one of the major health problems of the modern era, understanding the mechanisms of oro-gustatory detection of dietary fat is critical for the prevention and treatment of obesity. We have conducted the present study on Psammomys obesus, the rodent desert gerbil which is a unique polygenic natural animal model of obesity. Our results show that obese animals exhibit a strong preference for lipid solutions in a two-bottle test. Interestingly, the expression of CD36, a lipido-receptor, in taste buds cells (TBC), isolated from circumvallate papillae, was decreased at mRNA level, but remained unaltered at protein level, in obese animals. We further st…

CD36 AntigensMaleTasteAnatomy and PhysiologyCD36BiochemistryCalcium in biologyFatschemistry.chemical_compoundMolecular Cell BiologySignaling in Cellular ProcessesMembrane Receptor Signalingchemistry.chemical_classificationMultidisciplinarybiologyQRTaste PerceptionTaste BudsLipidsSensory SystemsLipid SignalingCytochemistryThapsigarginMedicinePsammomysDisease SusceptibilityIntracellularResearch ArticleSignal Transductionmedicine.medical_specialtyThapsigarginClinical Research DesignLinoleic acidScienceLinoleic AcidFood PreferencesInternal medicinemedicineAnimalsCalcium SignalingObesityAnimal Models of DiseaseBiologyNutritionCell MembraneFatty acidProteinsbiology.organism_classificationLipid MetabolismDietary FatsGustatory SystemTransmembrane ProteinsEndocrinologyMetabolismchemistryGene Expression Regulationbiology.proteinGerbillinaeMembrane CompositionNeurosciencePLoS ONE
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The Lipid-Sensor Candidates CD36 and GPR120 Are Differentially Regulated by Dietary Lipids in Mouse Taste Buds: Impact on Spontaneous Fat Preference

2011

BACKGROUND: Recent studies in rodents and humans suggest that the chemoreception of long-chain fatty acids (LCFA) in oral cavity is involved in the spontaneous preference for fatty foods and might contribute to the obesity risk. CD36 and GPR120 are LCFA receptors identified in rodent taste bud cells. The fact that CD36 or GPR120 gene inactivation leads to a decrease in the preference for lipids raises the question of the respective role(s) played by these gustatory lipid-sensor candidates. METHODOLOGY/PRINCIPAL FINDINGS: Using a combination of biochemical, nutritional and behavioural studies in wild-type, CD36(+/-)and CD36(-/-) mice, it was found that: 1°) CD36 and GPR120 display different …

CD36 AntigensMaleTasteChemoreceptorAnatomy and PhysiologyRodentCD36Blotting Westernlcsh:MedicineGene ExpressionReal-Time Polymerase Chain ReactionReceptors G-Protein-CoupledFood PreferencesMicebiology.animalIntegrative PhysiologyGene expressionAnimalsObesityReceptorlcsh:ScienceGeneBiologyNutritionMice KnockoutMultidisciplinarybiologylcsh:RGPR120Taste BudsDietary FatsImmunohistochemistrySensory SystemsCircadian RhythmBiochemistrybiology.proteinMedicinelipids (amino acids peptides and proteins)lcsh:QResearch ArticlePLoS ONE
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Upregulation of liver VLDL receptor and FAT/CD36 expressions in LDLR-/- apoB100/100 mice fed trans-10,cis-12 conjugated linoleic acid

2006

International audience; This study explores the mechanisms responsible for the fatty liver setup in mice fed trans-10,cis-12 conjugated linoleic acid (t10c12 CLA), hypothesizing that an induction of low density lipoprotein receptor (LDLR) expression is associated with lipid accumulation. To this end, the effects of t10c12 CLA treatment on lipid parameters, serum lipoproteins, and expression of liver lipid receptors were measured in LDLR(-/-) apoB(100/100) mice as a model of human familial hypercholesterolemia itself depleted of LDLR. Mice were fed t10c12 CLA over 2 or 4 weeks. We first observed that the treatment induced liver steatosis, even in the absence of LDLR. Mice treated for 2 weeks…

CD36 AntigensMaleVery low-density lipoproteinTRANSLOCASECD36RECEPTEUR SCAVENGER[SDV]Life Sciences [q-bio]FATTY ACID TRANSLOCASE030204 cardiovascular system & hematologyBiochemistryMice0302 clinical medicineEndocrinologyLinoleic Acids ConjugatedMice Knockout0303 health sciencesLipoprotein lipaselipoprotéinebiologyacide grasrécepteur d'hormoneChemistryFatty liverFatty Acidsfood and beveragesHEPATIC LIPASELipidsLOW DENSITY LIPOPROTEIN RECEPTOR3. Good healthUp-RegulationLiverSCAVENGER RECEPTOR CLASS B TYPE ILIVER STEATOSIS;LOW DENSITY LIPOPROTEIN RECEPTOR;TRIGLYCERIDE;LIPOATROPHY;LIPOPROTEIN;FATTY ACID TRANSLOCASE;VERY LOW DENSITY LIPOPROTEIN RECEPTOR;HEPATIC LIPASE;LIPOPROTEIN LIPASE;LOW DENSITY LIPOPROTEIN RECEPTOR-RELATED PROTEIN;SCAVENGER RECEPTOR CLASS B TYPE I;LIPOATROPHIE;TRANSLOCASE;LIPASE HEPATIQUE;RECEPTEUR SCAVENGERApolipoprotein B-100lipoprotéine lipaseTRIGLYCERIDElipids (amino acids peptides and proteins)Oxidation-Reductionmedicine.medical_specialtyLIPASE HEPATIQUELipolysisVLDL receptorMice Transgenicacide linoléique conjugué03 medical and health sciencesstéatose hépatiqueInternal medicineLIVER STEATOSISmedicineLIPOPROTEIN LIPASEAnimalsRNA Messengerlipoprotéine de faible densite030304 developmental biologyLOW DENSITY LIPOPROTEIN RECEPTOR-RELATED PROTEINnutritional and metabolic diseasesCell Biologymedicine.diseaseLipid MetabolismLIPOATROPHYDietary FatsEndocrinologyLIPOPROTEINReceptors LDLVERY LOW DENSITY LIPOPROTEIN RECEPTORLIPOATROPHIELDL receptorbiology.proteinacide gras transHepatic lipaseLipoprotein
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Expression of Putative Fatty Acid Transporter Genes Are Regulated by Peroxisome Proliferator-activated Receptor α and γ Activators in a Tissue- and I…

1998

Regulation of gene expression of three putative long-chain fatty acid transport proteins, fatty acid translocase (FAT), mitochondrial aspartate aminotransferase (mAspAT), and fatty acid transport protein (FATP), by drugs that activate peroxisome proliferator-activated receptor (PPAR) alpha and gamma were studied using normal and obese mice and rat hepatoma cells. FAT mRNA was induced in liver and intestine of normal mice and in hepatoma cells to various extents only by PPARalpha-activating drugs. FATP mRNA was similarly induced in liver, but to a lesser extent in intestine. The induction time course in the liver was slower for FAT and FATP mRNA than that of an mRNA encoding a peroxisomal en…

CD36 AntigensMalemedicine.medical_specialtyAdipatesOrganic Anion TransportersReceptors Cytoplasmic and NuclearPeroxisome proliferator-activated receptorWhite adipose tissueBiologyMicrobodiesBiochemistryMiceLiver Neoplasms ExperimentalDiethylhexyl PhthalateInternal medicineBrown adipose tissueTumor Cells CulturedmedicineAnimalsClofibrateRNA MessengerMolecular BiologyDNA Primerschemistry.chemical_classificationMembrane GlycoproteinsBase SequenceFatty Acid Transport ProteinsFatty acidTroglitazoneCell BiologyPeroxisomeRatsPyrimidinesEndocrinologymedicine.anatomical_structureAdipose TissueGene Expression RegulationLiverchemistryPeroxisome proliferator-activated receptor alphaTranscription Factorsmedicine.drugJournal of Biological Chemistry
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CD36 AA genotype is associated with decreased lipid taste perception in young obese, but not lean, children.

2015

Obesity is an alarming threat for all age groups, including children. Fat overconsumption is one of the factors that directly influences this pathology. Recent studies have suggested that a common variant in the CD36 gene, that is, single-nucleotide polymorphism (SNP) rs1761667-A allele, that reduces CD36 expression, associates with high oral fat detection thresholds in some obese subjects. The objective was to assess fatty acid sensitivity in relation to CD36 SNP in young lean and obese children. We studied lingual detection thresholds for emulsions, containing oleic acid, in Algerian children (n=116, age=8±0.5 years) who were divided into two groups: obese (n=57; body mass index (BMI) z-s…

CD36 AntigensMalemedicine.medical_specialtyTasteWaistGenotypeEndocrinology Diabetes and MetabolismCD36Medicine (miscellaneous)Polymorphism Single NucleotideBody Mass IndexFood PreferencesGene FrequencyThinnessPolymorphism (computer science)Internal medicineSurveys and QuestionnairesGenotypemedicineSNPHumansObesityChild2. Zero hungerNutrition and Dieteticsbiologybusiness.industryTaste PerceptionFeeding Behaviormedicine.diseaseObesityDietary FatsEndocrinologyAlgeriabiology.proteinFemaleWaist CircumferencebusinessBody mass indexOleic AcidInternational journal of obesity (2005)
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Cell mechanisms of gustatory lipids perception and modulation of the dietary fat preference.

2014

Dietary lipids are usually responsible of several metabolic disorders. Recent compelling evidences suggest that there is a sixth taste modality, destined for the detection of oro-gustatory fats. The lipid-binding glycoprotein CD36, expressed by circumvallate papillae (CVP) of the mouse tongue, has been shown to be implicated in oro-gustatory perception of dietary lipids. We demonstrate that linoleic acid (LA) by activating sPLA2, cPLA2 and iPLA2 via CD36, produced arachidonic acid (AA) and lyso-phosphatidylcholine (Lyso-PC) which triggered Ca(2+) influx in CD36-positive taste bud cells (TBC), purified from mouse CVP. LA induced the production of Ca(2+) influx factor (CIF). CIF, AA and Lyso-…

CD36 AntigensTasteCD36Linoleic acidBiochemistryModels Biologicalchemistry.chemical_compoundFood PreferencesAnimalsHumansStromal Interaction Molecule 1Calcium signalingbiologyORAI1Endoplasmic reticulumMembrane ProteinsTaste PerceptionSTIM1General MedicineTaste BudsDietary FatsCell biologyNeoplasm ProteinschemistryBiochemistrybiology.proteinArachidonic acidCalciumBiochimie
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CD36 and taste of fat.

2012

Purpose of review This review explores the recent literature on the role of CD36 in the taste of fat, eating behavior and obesity risk in rodents and humans. Recent findings During the last decade, evidence was accumulated supporting the existence of a taste of fat responsible for the spontaneous preference for lipid-rich foods. Surprisingly, the multifunctional membrane-associated protein CD36 appears to play a significant role in this system in rodents. Recently, another plausible gustatory lipid sensor, the GPR120, was also identified in mice, revealing that the mechanism involved in oral fat detection is more complex than initially expected. Interestingly, lingual CD36 and GPR120 displa…

CD36 AntigensTasteFatty foodsCD36Medicine (miscellaneous)PhysiologyBiologyAffect (psychology)Receptors G-Protein-CoupledFood PreferencesMiceRisk FactorsAnimalsHumansObesityNutrition and DieteticsMechanism (biology)GPR120Membrane ProteinsDifferential regulationFeeding BehaviorTaste BudsDietary FatsGene Expression RegulationTastebiology.proteinEating behaviorCurrent opinion in clinical nutrition and metabolic care
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CD36 involvement in orosensory detection of dietary lipids, spontaneous fat preference, and digestive secretions

2005

International audience; Rats and mice exhibit a spontaneous attraction for lipids. Such a behavior raises the possibility that an orosensory system is responsible for the detection of dietary lipids. The fatty acid transporter CD36 appears to be a plausible candidate for this function since it has a high affinity for long-chain fatty acids (LCFAs) and is found in lingual papillae in the rat. To explore this hypothesis further, experiments were conducted in rats and in wild-type and CD36-null mice. In mice, RT-PCR experiments with primers specific for candidate lipid-binding proteins revealed that only CD36 expression was restricted to lingual papillae although absent from the palatal papill…

CD36 Antigensmedicine.medical_specialtyCD36Appetite03 medical and health sciences0302 clinical medicineTongueInternal medicinemedicineAnimalsHumansLingual papilla030304 developmental biologyDietary lipidschemistry.chemical_classification0303 health sciencesbiologyFatty acidTransporterGeneral MedicineTaste BudsDietary FatsEndocrinologymedicine.anatomical_structureBiochemistrychemistrybiology.proteinCD36PancreasLigation[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryImmunostainingResearch ArticleJournal of Clinical Investigation
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