Search results for " Retinoic acid"

showing 10 items of 42 documents

In vivo studies of altered expression patterns of p53 and proliferative control genes in chronic vitamin A deficiency and hypervitaminosis

2003

Several clinical trials have revealed that individuals who were given beta-carotene and vitamin A did not have a reduced risk of cancer compared to those given placebo; rather, vitamin A could actually have caused an adverse effect in the lungs of smokers [Omenn, G.S., Goodman, G.E., Thornquist, M.D., Balmes, J., Cullen, M.R., Glass, A., Keogh, J.P., Meyskens, F.L., Valanis, B., Williams, J.H., Barnhart, S. & Hammar, S. N. Engl. J. Med (1996) 334, 1150-1155; Hennekens, C.H., Buring, J.E., Manson, J.E., Stampfer, M., Rosner, B., Cook, N.R., Belanger, C., LaMotte, F., Gaziano, J.M., Ridker, P.M., Willet, W. & Peto, R. (1996) N. Engl. J. Med. 334, 1145-1149]. Using differential display techniq…

Cyclin-Dependent Kinase Inhibitor p21VitaminRetinyl Estersmedicine.medical_specialtyMacromolecular SubstancesProto-Oncogene Proteins c-junReceptors Retinoic AcidBlotting WesternRetinoic acidBiologymedicine.disease_causeBiochemistrychemistry.chemical_compoundIn vivoCyclinsInternal medicinemedicineAnimalsHypervitaminosis ARNA MessengerRats WistarVitamin AReceptorLungDifferential displayReverse Transcriptase Polymerase Chain ReactionVitamin A DeficiencyGene Expression ProfilingDNAmedicine.diseaseHypervitaminosisPrecipitin TestsRatsVitamin A deficiencyEndocrinologyGene Expression RegulationLiverchemistryChronic DiseaseImmunologyDiterpenesTumor Suppressor Protein p53CarcinogenesisCell DivisionEuropean Journal of Biochemistry
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Retinoid X receptor and retinoic acid response in the marine sponge Suberites domuncula

2003

SUMMARY To date no nuclear receptors have been identified or cloned from the phylogenetically oldest metazoan phylum, the Porifera (sponges). We show that retinoic acid causes tissue regression in intact individuals of the demosponge Suberites domuncula and in primmorphs, special three-dimensional cell aggregates. Primmorphs were cultivated on a galectin/poly-L-lysine matrix in order to induce canal formation. In the presence of 1 or 50 μmol l–1 retinoic acid these canals undergo regression, a process that is reversible. We also cloned the cDNA from S. domunculaencoding the retinoid X receptor (RXR), which displays the two motifs of nuclear hormone receptors, the ligand-binding and the DNA-…

DNA ComplementaryRetinoid X receptor; Suberites domuncula; marine spongesCroatiaReceptors Retinoic AcidPhysiologyMolecular Sequence DataRetinoic acidGene ExpressionApoptosisEnzyme-Linked Immunosorbent AssayTretinoinRetinoic acid receptor betaAquatic ScienceRetinoic acid-inducible orphan G protein-coupled receptorchemistry.chemical_compoundAnimalsCluster AnalysisAmino Acid SequenceMolecular BiologyPhylogenyEcology Evolution Behavior and SystematicsbiologySequence Analysis DNARetinoic acid receptor gammaBlotting Northernbiology.organism_classificationRetinoid X receptor gammaPoriferaCell biologySuberites domunculaRetinoic acid receptorRetinoid X ReceptorschemistryBiochemistryRetinoic acid receptor alphaInsect ScienceAnimal Science and ZoologySequence AlignmentTranscription FactorsJournal of Experimental Biology
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Function of RAR? and RAR?2 at the initiation of retinoid signaling is essential for avian embryo survival and for distinct events in cardiac morphoge…

2003

Avian embryogenesis requires retinoid receptor activation by the vitamin A active form, retinoic acid (RA), during neurulation. We conducted loss-of-function analysis in quail embryos by nutritional deprivation of RA and by blocking generation of retinoid receptors. Here we identify a distinct role for RARα2 in cardiac inflow tract morphogenesis and for RARγ in cardiac left/right orientation and looping morphogenesis. Blocking normal embryos with antisense oligonucleotides to RARα2 or RXRα diminishes GATA-4 transcripts, while blocking RARγ or RXRα diminishes nodal and Pitx2 transcripts; the expression of these genes in the heart forming region resembles that of the vitamin A-deficient embry…

Embryo NonmammalianTime Factorsanimal structuresCell SurvivalReceptors Retinoic Acidmedicine.drug_classMorphogenesisRetinoic acidRetinoid receptorCoturnixBiologyRetinoidschemistry.chemical_compoundmedicineAnimalsRNA MessengerRetinoidIn Situ HybridizationHomeodomain ProteinsGeneticsRetinoid X receptor alphaPITX2MyocardiumRetinoic Acid Receptor alphaGene Expression Regulation DevelopmentalOligonucleotides AntisenseGATA4 Transcription FactorCell biologyDNA-Binding ProteinsPhenotypeRetinoid X ReceptorschemistrySignal transductionNODALSignal TransductionTranscription FactorsDevelopmental BiologyDevelopmental Dynamics
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Cloning of Several Genes Coding for Retinoic Acid Nuclear Receptors in the Mouse Embryonal Carcinoma Cell Line PCC7–MZ1

1993

Mouse embryonal carcinoma cell line PCC7-Mz1 can be induced by retinoic acid (RA) to differentiate into several well defined phenotypes of neuroectodermal origin (Lang, E. et al. (1989) J. Cell. Biol. 109, 2481-2493). Several subclones of the cell line (clonal variants) differ from each other in their developmental potential. To test whether these differences in cellular fate are due to somatic mutations in specific genes of these cells, we have cloned full length cDNAs coding for the alpha 1 and beta 2 isoforms, and partial length cDNAs coding for the alpha 2, beta 1 and beta 3 isoforms of the retinoic acid nuclear receptor (RAR). The cloned cDNAs did not differ in sequence from those of n…

Embryonal Carcinoma Stem CellsReceptors Retinoic AcidSomatic cellCellular differentiationMolecular Sequence DataRetinoic acidTretinoinBiologyEmbryonal carcinomaMicechemistry.chemical_compoundTumor Cells CulturedmedicineAnimalsHumansAmino Acid SequenceCloning MolecularPromoter Regions GeneticGenePharmacologyCloningBase SequenceNuclear ProteinsEmbryonal Carcinoma Stem CellsCell DifferentiationDNAmedicine.diseaseMolecular biologyRecombinant ProteinsRetinoic acid receptorchemistryNeoplastic Stem CellsCarrier ProteinsJournal of Receptor Research
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T helper 17 lineage differentiation is programmed by orphan nuclear receptors ROR alpha and ROR gamma.

2007

T cell functional differentiation is mediated by lineage-specific transcription factors. T helper 17 (Th17) has been recently identified as a distinct Th lineage mediating tissue inflammation. Retinoic acid receptor-related orphan receptor gamma (ROR gamma) was shown to regulate Th17 differentiation; ROR gamma deficiency, however, did not completely abolish Th17 cytokine expression. Here, we report Th17 cells highly expressed another related nuclear receptor, ROR alpha, induced by transforming growth factor-beta and interleukin-6 (IL-6), which is dependent on signal transducer and activator of transcription 3. Overexpression of ROR alpha promoted Th17 differentiation, possibly through the c…

Encephalomyelitis Autoimmune ExperimentalReceptors Retinoic AcidT cellImmunologyRetinoic acidReceptors Cytoplasmic and NuclearElectrophoretic Mobility Shift AssayBiology03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineT-Lymphocyte SubsetsmedicineT helper 17 cellImmunology and AllergyAnimalsCell LineageReceptorMOLIMMUNOTranscription factor030304 developmental biologyOrphan receptor0303 health sciencesReceptors Thyroid HormoneReverse Transcriptase Polymerase Chain ReactionInterleukin-17Cell DifferentiationNuclear Receptor Subfamily 1 Group F Member 1T-Lymphocytes Helper-InducerNuclear Receptor Subfamily 1 Group F Member 3Molecular biologyMice Mutant StrainsCell biologymedicine.anatomical_structureInfectious DiseaseschemistryNuclear receptorSTAT proteinTrans-ActivatorsFemale030215 immunologyImmunity
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Expression of retinoic acid nuclear receptors in the mouse embryonal carcinoma cell line PCC7-Mz1

1992

Mouse embryonal carcinoma cell line PCC7-Mz1 can serve as a model of mammalian neural development [1989, J. Cell. Biol. 109, 2481-2493]. Upon exposure to all-trans retinoic acid (RA), Mz1 cells differentiate into a stable pattern of neurons, astroglia and fibroblasts whereas variants of the parental cell line either are restricted in their patterns of derivatives or do not respond at all to RA. Using gene probes specific for the alpha 1, alpha 2 and beta 2 isoforms of the retinoic acid nuclear receptor, we have studied by Northern blot analysis the expression of these transcription factors in uninduced and induced cells of clone Mz1 and in variants with different developmental potential. al…

Gene isoformmedicine.medical_specialtyTranscription GeneticReceptors Retinoic AcidCellular differentiationBiophysicsRetinoic acidTretinoinExpressionBiologyEmbryonic carcinoma cell line PCC7-MzBiochemistryEmbryonal carcinomaMicechemistry.chemical_compoundStructural BiologyInternal medicineTumor Cells CulturedGeneticsmedicineAnimalsRNA MessengerNorthern blotMolecular BiologyCell NucleusdbcAMPTeratomaRetinoic acid receptorCell DifferentiationCell BiologyBlotting Northernmedicine.diseaseCell biologyRetinoic acid receptorEndocrinologyBucladesineNuclear receptorchemistryCell cultureRNACarrier ProteinsPoly AIsoformsFEBS Letters
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Interleukin-12 and -23 Control Plasticity of CD127(+) Group 1 and Group 3 Innate Lymphoid Cells in the Intestinal Lamina Propria.

2015

Human group 1 ILCs consist of at least three phenotypically distinct subsets, including NK cells, CD127(+) ILC1, and intraepithelial CD103(+) ILC1. In inflamed intestinal tissues from Crohn's disease patients, numbers of CD127(+) ILC1 increased at the cost of ILC3. Here we found that differentiation of ILC3 to CD127(+) ILC1 is reversible in vitro and in vivo. CD127(+) ILC1 differentiated to ILC3 in the presence of interleukin-2 (IL-2), IL-23, and IL-1β dependent on the transcription factor RORγt, and this process was enhanced in the presence of retinoic acid. Furthermore, we observed in resection specimen from Crohn's disease patients a higher proportion of CD14(+) dendritic cells (DC), whi…

Interleukin 2Receptors Retinoic AcidCellular differentiationCD14ImmunologyInterleukin-1betaRetinoic acidLipopolysaccharide Receptorschemical and pharmacologic phenomenaTretinoinMice SCIDBiologyInterleukin-12 Subunit p35Interleukin-7 Receptor alpha Subunitchemistry.chemical_compoundMiceIntestinal mucosaCrohn DiseaseMice Inbred NODmedicineImmunology and AllergyAnimalsHumansRetinoid X Receptor gammaLymphocytesIntestinal MucosaInterleukin-7 receptorCells CulturedMice KnockoutRetinoic Acid Receptor alphaInnate lymphoid cellvirus diseaseshemic and immune systemsCell DifferentiationDendritic CellsNuclear Receptor Subfamily 1 Group F Member 3Molecular biologyKiller Cells NaturalMice Inbred C57BLInfectious DiseaseschemistryLymphocyte TransfusionImmunologyInterleukin 12Interleukin-23 Subunit p19Interleukin-2medicine.drugImmunity
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The nuclear receptor PPARγ selectively inhibits Th17 differentiation in a T cell–intrinsic fashion and suppresses CNS autoimmunity

2009

T helper cells secreting interleukin (IL)-17 (Th17 cells) play a crucial role in autoimmune diseases like multiple sclerosis (MS). Th17 differentiation, which is induced by a combination of transforming growth factor (TGF)-beta/IL-6 or IL-21, requires expression of the transcription factor retinoic acid receptor-related orphan receptor gamma t (ROR gamma t). We identify the nuclear receptor peroxisome proliferator-activated receptor gamma (PPAR gamma) as a key negative regulator of human and mouse Th17 differentiation. PPAR gamma activation in CD4(+) T cells selectively suppressed Th17 differentiation, but not differentiation into Th1, Th2, or regulatory T cells. Control of Th17 differentia…

MESH: Nuclear Receptor Subfamily 1 Group F Member 3Helper-InducerReceptors Retinoic AcidT-LymphocytesMESH: Interleukin-17Cellular differentiationRetinoic AcidPeroxisome proliferator-activated receptorNeurodegenerativeInbred C57BLMedical and Health SciencesMiceInterleukin 210302 clinical medicineGroup FRAR-related orphan receptor gammaMESH: Nuclear Receptor Co-Repressor 2Receptors2.1 Biological and endogenous factorsThyroid HormoneImmunology and AllergyMESH: AnimalsAetiologyEncephalomyelitisPromoter Regions Geneticchemistry.chemical_classificationOrphan receptor0303 health sciencesReceptors Thyroid HormoneInterleukin-17Cell DifferentiationT-Lymphocytes Helper-InducerNuclear Receptor Subfamily 1 Group F Member 33. Good healthCell biologyDNA-Binding Proteinsmedicine.anatomical_structureMESH: Repressor Proteins[SDV.IMM]Life Sciences [q-bio]/ImmunologyInterleukin 17MESH: Cell Differentiationmedicine.medical_specialtyEncephalomyelitis Autoimmune ExperimentalMultiple SclerosisNuclear Receptor Subfamily 1Member 31.1 Normal biological development and functioningT cellImmunologyBiologyAutoimmune DiseasePromoter RegionsExperimental03 medical and health sciencesGeneticUnderpinning researchMESH: Mice Inbred C57BLInternal medicineMESH: Promoter Regions GeneticGeneticsmedicineAnimalsHumansNuclear Receptor Co-Repressor 2MESH: Receptors Thyroid HormoneMESH: T-Lymphocytes Helper-InducerMESH: Encephalomyelitis Autoimmune ExperimentalMESH: Mice030304 developmental biologyMESH: Receptors Retinoic AcidMESH: HumansInflammatory and immune systemNeurosciencesBrief Definitive ReportCorrectionMESH: Multiple SclerosisBrain DisordersMice Inbred C57BLPPAR gammaRepressor ProteinsEndocrinologyMESH: PPAR gammaNuclear receptorchemistryMESH: DNA-Binding Proteins030217 neurology & neurosurgeryAutoimmuneJournal of Experimental Medicine
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Prognostic value of FLT3 mutations in patients with acute promyelocytic leukemia treated with all-trans retinoic acid and anthracycline monochemother…

2011

Background Fms-like tyrosine kinase-3 (FLT3) gene mutations are frequent in acute promyelocytic leukemia but their prognostic value is not well established. Design and Methods We evaluated FLT3-internal tandem duplication and FLT3-D835 mutations in patients treated with all-trans retinoic acid and anthracycline-based chemotherapy enrolled in two subsequent trials of the Programa de Estudio y Tratamiento de las Hemopatias Malignas (PETHEMA) and Hemato-Oncologie voor Volwassenen Nederland (HOVON) groups between 1996 and 2005. Results FLT3-internal tandem duplication and FLT3-D835 mutation status was available for 306 (41%) and 213 (29%) patients, respectively. Sixty-eight (22%) and 20 (9%) pa…

MaleAIDA PROTOCOLGene mutationmedicine.disease_causeGastroenterologyLeukemia Promyelocytic AcuteRESIDUAL DISEASEhemic and lymphatic diseasesMOLECULAR SUBTYPESChildanthracyclinesMutationRemission InductionFLT3 mutationshemic and immune systemsHematologyMiddle AgedPrognosisall-trans retinoic acidLeukemiaTreatment Outcomeembryonic structuresFemaleTandem exon duplicationmedicine.drugAcute promyelocytic leukemiaAdultmedicine.medical_specialtyAdolescentAntineoplastic AgentsTretinoinACUTE MYELOID-LEUKEMIABiologyYoung AdultQUALITY-CONTROLTretinoinPOOR-PROGNOSISInternal medicinemedicineCoagulopathyHumansAgedprognostic factorsOriginal Articlesacute promyelocytic leukemiamedicine.diseaseSurvival AnalysisINTERNAL TANDEM DUPLICATIONRISK-ADAPTED TREATMENTPML/RAR-ALPHAfms-Like Tyrosine Kinase 3Fms-Like Tyrosine Kinase 3ImmunologyPETHEMA GROUPMutation
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Vitamin E activates CRABP-II gene expression in cultured human fibroblasts, role of protein kinase C

2004

The treatment of human fibroblasts with different tocopherols in the presence of retinol caused an increase in cytoplasmic retinoic acid binding protein II (CRABP-II) mRNA and protein. The possibility of an involvement of protein kinase C (PKC) in the response to tocopherols was supported by the results obtained with the PKC-specific inhibitors, calphostin C and bisindolylmaleimide I. The effect of alpha-tocopherol was prevented by okadaic acid, suggesting that a protein phosphatase is responsible for PKC dephosphorylation produced by the presence of tocopherols. The results shown support the hypothesis that phosphorylation/dephosphorylation of RXRalpha via PKC may be involved in the regula…

MaleBisindolylmaleimideTranscription GeneticReceptors Retinoic AcidPhosphatasealpha-TocopherolBiophysicsBiochemistryDephosphorylationchemistry.chemical_compoundStructural BiologyProtein kinase COkadaic AcidGeneticsHumansVitamin ERNA MessengerRetinoic acid bindingPhosphorylationMolecular BiologyProtein kinase CCells CulturedDNA PrimersBase SequenceReverse Transcriptase Polymerase Chain ReactionInfant NewbornRetinoid X receptor αCell BiologyMolecular biologyRetinoic acid receptorCalphostin CchemistryGene Expression RegulationProtein phosphatasePhosphorylationFibroblastCytoplasmic retinoic acid binding protein IIFEBS Letters
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