Search results for "Orphan Nuclear Receptors"

showing 4 items of 14 documents

Liver X Receptor Regulates Arachidonic Acid Distribution and Eicosanoid Release in Human Macrophages

2013

Objective— Liver X receptors (LXRs) are oxysterol-activated nuclear receptors that are highly expressed in macrophages and regulate lipid homeostasis and inflammation. Among putative LXR target genes, lysophosphatidylcholine acyltransferase 3 (LPCAT3) involved in the Lands cycle controls the fatty acid composition at the sn-2 position of glycerophospholipids and, therefore, the availability of fatty acids, such as arachidonic acid (AA), used for eicosanoid synthesis. The aim of our study was to determine whether LXRs could regulate the Lands cycle in human macrophages, to assess the consequences in terms of lipid composition and inflammatory response, and to work out the relative contribut…

InflammationBiologySensitivity and SpecificityDinoprostoneMonocyteschemistry.chemical_compoundDownregulation and upregulationmedicineHumansDimethyl SulfoxideRNA MessengerLiver X receptorReceptorCells CulturedLiver X ReceptorsInflammationArachidonic AcidMacrophagesLysophospholipid acyltransferase activity1-Acylglycerophosphocholine O-AcyltransferaseMicroarray AnalysisOrphan Nuclear ReceptorsUp-RegulationchemistryEicosanoidNuclear receptorBiochemistryEicosanoidslipids (amino acids peptides and proteins)Arachidonic acidmedicine.symptomCardiology and Cardiovascular MedicineArteriosclerosis, Thrombosis, and Vascular Biology
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Liver X Receptor ligand cytotoxicity in colon cancer cells and not in normal colon epithelial cells depends on LXRβ subcellular localization

2015

Increasing evidence indicates that Liver X Receptors (LXRs) have some anticancer properties. We recently demonstrated that LXR ligands induce colon cancer cell pyroptosis through an LXRβ-dependent pathway. In the present study, we showed that human colon cancer cell lines presented differential cytoplasmic localizations of LXRβ. This localization correlated with caspase-1 activation and cell death induction under treatment with LXR ligand. The association of LXRβ with the truncated form of RXRα (t-RXRα) was responsible for the sequestration of LXRβ in the cytoplasm in colon cancer cells. Moreover t-RXRα was not expressed in normal colon epithelial cells. These cells presented a predominantl…

LXRβCytoplasmmedicine.medical_specialtyHydrocarbons FluorinatedColonColorectal cancerCaspase 1BiologyLigandsCell Line03 medical and health sciences0302 clinical medicineCell Line TumorInternal medicineRXRαsubcellular localizationmedicineHumansIntestinal MucosaLiver X receptorCytotoxicityLiver X Receptors030304 developmental biologySulfonamides0303 health sciencesRetinoid X Receptor alphaRetinoid X receptor alphaCaspase 1PyroptosisEpithelial CellsHCT116 CellsOrphan Nuclear ReceptorsSubcellular localizationmedicine.disease3. Good healthEnzyme ActivationGene Expression Regulation NeoplasticEndocrinologycolon cancerOncologyCell culture030220 oncology & carcinogenesisColonic NeoplasmsCancer researchPriority Research PaperOncotarget
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Up‐regulation of the α‐secretase ADAM10 by retinoic acid receptors and acitretin

2009

Late-onset Alzheimer's disease is often connected with nutritional misbalance, such as enhanced cholesterol intake, deficiency in polyunsaturated fatty acids, or hypovitaminosis. The alpha-secretase ADAM10 has been found to be regulated by retinoic acid, the bioreactive metabolite of vitamin A. Here we show that retinoids induce gene expression of ADAM10 and alpha-secretase activity by nonpermissive retinoid acid receptor/retinoid X receptor (RAR/RXR) heterodimers, whereby alpha- and beta-isotypes of RAR play a major role. However, ligands of other RXR binding partners, such as the vitamin D receptor, do not stimulate alpha-secretase activity. On the basis of these findings, we examined the…

Malemedicine.medical_specialtyReceptors Retinoic AcidReceptors Cytoplasmic and NuclearMice TransgenicTretinoinRetinoic acid receptor betaRetinoid X receptorBiologyBiochemistryCell LineAcitretinADAM10 ProteinAmyloid beta-Protein PrecursorMiceKeratolytic AgentsAlzheimer DiseaseInternal medicineGeneticsmedicineAnimalsHumansPromoter Regions GeneticMolecular BiologyLiver X ReceptorsReceptors Thyroid HormoneMolecular StructureRetinoid X receptor alphaMembrane ProteinsOrphan Nuclear ReceptorsRetinoid X receptor gammaAcitretinUp-RegulationDNA-Binding ProteinsPPAR gammaADAM ProteinsRetinoic acid receptorRetinoid X ReceptorsEndocrinologyGene Expression RegulationRetinoic acid receptor alphaReceptors CalcitriolAmyloid Precursor Protein SecretasesRetinoid X receptor betaBiotechnologymedicine.drugThe FASEB Journal
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Biological activities of the LXRα and β agonist, 4β-hydroxycholesterol, and of its isomer, 4α-hydroxycholesterol, on oligodendrocytes: effects on cel…

2013

The biochemical and biological properties of 4β-hydroxycholesterol and of its isomer, 4α-hydroxycholesterol, are not well known. So, we determined the ability of 4α- and 4β-hydroxycholesterol to react with LXRα and LXRβ, and we characterized the activities of these oxysterols on oligodendrocytes which are myelin synthesizing cells. The effects of 4α- and 4β-hydroxycholesterol were studied on 158N murine oligodendrocytes to assess their activities on cell growth and viability, oxidative and inflammatory status. To this end different parameters were used: cell counting with trypan blue; identification of dead cells and cell cycle analysis with propidium iodide; evaluation of mitochondrial dep…

Programmed cell deathCell SurvivalBiologyBiochemistrychemistry.chemical_compoundMiceIsomerismpolycyclic compoundsmedicineAnimalsPropidium iodideProtein Structure QuaternaryCell ProliferationLiver X ReceptorsInflammationSuperoxideCell growthAcridine orangeDepolarizationGeneral MedicineOrphan Nuclear ReceptorsOligodendrocyteActinsHydroxycholesterolsCell biologyMitochondriaOligodendrogliamedicine.anatomical_structurechemistryCytokineslipids (amino acids peptides and proteins)Trypan blueProtein MultimerizationLysosomesReactive Oxygen SpeciesOxidation-ReductionBiochimie
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