Search results for "P19 cell"

showing 7 items of 7 documents

Identification of a classic nuclear localization signal at the N terminus that regulates the subcellular localization of Rbfox2 isoforms during diffe…

2016

Nuclear localization of the alternative splicing factor Rbfox2 is achieved by a C-terminal nuclear localization signal (NLS) which can be excluded from some Rbfox2 isoforms by alternative splicing. While this predicts nuclear and cytoplasmic localization, Rbfox2 is exclusively nuclear in some cell types. Here, we identify a second NLS in the N terminus of Rbfox2 isoform 1A that is not included in Rbfox2 isoform 1F. Rbfox2 1A isoforms lacking the C-terminal NLS are nuclear, whereas equivalent 1F isoforms are cytoplasmic. A shift in Rbfox2 expression toward cytoplasmic 1F isoforms occurs during epithelial to mesenchymal transition (EMT) and could be important in regulating the activity and fu…

0301 basic medicineGene isoformCytoplasmEpithelial-Mesenchymal TransitionNuclear Localization SignalsBiophysicsBiochemistryCell LineTransforming Growth Factor beta103 medical and health sciencesMiceMammary Glands AnimalProtein DomainsStructural BiologyCell Line TumorGeneticsNLSAnimalsProtein IsoformsAmino Acid SequenceMolecular BiologyCell NucleusChemistryAlternative splicingCell DifferentiationEpithelial CellsMouse Embryonic Stem CellsCell BiologySubcellular localizationMolecular biologyCell biologyAlternative Splicing030104 developmental biologyP19 cellCytoplasmRNA splicingRNA Splicing FactorsSequence AlignmentNuclear localization sequenceSignal TransductionFEBS letters
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Fetal calf serum and retinoic acid affect proliferation and terminal differentiation of a rat rhabdomyosarcoma cell line (BA-HAN-1C)

1989

We report on the establishment of a model for differentiation induction in sarcomas, using the clonal rhabdomyosarcoma cell line BA-HAN-1C. This rhabdomyosarcoma cell line is composed of morphologically undifferentiated mononuclear stem cells, some of which spontaneously fuse to form terminally differentiated multinuclear myotube-like giant cells. The deprivation of fetal calf serum (FCS) or the exposure to retinoic acid, respectively, resulted in a significant inhibition of proliferation (P less than 0.001) and a marked increase in cellular differentiation as shown by a significant increase in the number of myotube-like giant cells (P less than 0.001) and in the creatine kinase activity (P…

Cancer Researchmedicine.medical_specialtyCell divisionCellular differentiationRetinoic acidTretinoinBiologyCell Linechemistry.chemical_compoundTretinoinInternal medicineRhabdomyosarcomaTumor Cells CulturedmedicineAnimalsCell DifferentiationFetal BloodMolecular biologyRatsP19 cellEndocrinologyOncologychemistryGiant cellCell cultureCattleStem cellCell DivisionResearch Articlemedicine.drugBritish Journal of Cancer
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Cell fate specification in an in vitro model of neural development

1998

We have studied in an in vitro model of neural development the effect of neighboring cells on the fate of single fluorescently labeled precursor cells. In one line of experiments, PCC7-Mz1 embryonal carcinoma cells were transiently transfected with "green fluorescent protein" (GFP) and, following incubation with 0.1 microM all-trans retinoic acid (RA), the number and morphology of derivatives (neuronal or non-neuronal) was determined that form groups of GFP-expressing cells in a surrounding of unlabeled cells. Because single PCC7-Mz1 cells can produce single-lineage and mixed-lineage derivatives, they are individually pluripotent. In another line of experiments, we have analyzed the fate of…

Cell typeHistologyCell SurvivalCellular differentiationGreen Fluorescent ProteinsCell fate determinationBiologyPathology and Forensic MedicineMiceProsencephalonNeurosphereTumor Cells CulturedAnimalsNeuronsExtracellular Matrix ProteinsNeurogenesisCell Differentiation3T3 CellsCell BiologyGeneral MedicineEmbryonic stem cellCell biologyLuminescent ProteinsP19 cellCOS CellsImmunologyStem cellEuropean Journal of Cell Biology
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Analysis of NO synthase expression in neuronal, astroglial and fibroblast-like derivatives differen-tiating from PCC7-Mzl embryonic carcinoma cells

1999

We studied the expression of the NO synthase isoforms in an in vitro model of neural development using RT-PCR, Western blot and immu- nohistochemistry. Murine PCC7-Mzl cells (Jostock et al., Eur. J. Cell Biol. 76, 63–76,1998) differentiate in the presence of all-trans retinoic acid and dibutyryl cAMP along the neural pathway into neuron-like, fibroblast-like and astroglia-like cells. Undifferentiated cells showed immunofluorescent staining for neuronal-type NOSI and endothelial- type NOS III. This expression pattern was retained in those cells differ entiating into neurofilament- and tau protein-positive neuronal cells. Thymocyte alloantigen (Thyl.2/CD 90.2)-positive Fibroblasts, appearing …

HistologyNeurofilamentGlial fibrillary acidic proteinbiologyRetinoic acidCell BiologyGeneral MedicineEmbryonic stem cellMolecular biologyPathology and Forensic MedicineThymocytechemistry.chemical_compoundP19 cellchemistrybiology.proteinStem cellNeural developmentEuropean Journal of Cell Biology
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Differentiation-associated apoptosis of neural stem cells is effected by Bcl-2 overexpression: impact on cell lineage determination

2001

Apoptosis is an integral part of neural development. To elucidate the importance of programmed cell death on cell lineage determination we utilized murine PCC7-Mzl cells, a model system for neural differentiation. Treatment of pluripotent PCC7-Mzl stem cells with 0.1 microM all-trans retinoic acid (RA) causes a cease of proliferation and an initiation of differentiation into neurons, glial cells and fibroblasts. Simultaneously, a fraction of the cell culture (ca. 25%) dies within 24 h by apoptosis. We transfected PCC7-Mzl cells with the human bcl-2 cDNA and generated PCC7-Mz-Bcl-2 cell lines expressing two- to tenfold higher levels of Bcl-2 than parental cells. Overexpression of Bcl-2 resul…

Programmed cell deathDNA ComplementaryHistologyCellular differentiationApoptosisTretinoinBiologyCeramidesTransfectionPathology and Forensic MedicineMiceNeurosphereTumor Cells CulturedAnimalsCell LineageElectrophoresis Agar GelNeuronsCaspase 8Stem CellsCell DifferentiationCell BiologyGeneral MedicineFibroblastsMolecular biologyCaspase 9Neural stem cellCell biologyP19 cellProto-Oncogene Proteins c-bcl-2Cell cultureCaspasesStem cellNeurogliaBiomarkersCell DivisionAdult stem cellEuropean Journal of Cell Biology
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Efficient differentiation of embryonic stem cells into mesodermal precursors by BMP, retinoic acid and Notch signalling

2012

The ability to direct differentiation of mouse embryonic stem (ES) cells into specific lineages not only provides new insights into the pathways that regulate lineage selection but also has translational applications, for example in drug discovery. We set out to develop a method of differentiating ES cells into mesodermal cells at high efficiency without first having to induce embryoid body formation. ES cells were plated on a feeder layer of PA6 cells, which have membrane-associated stromal-derived inducing activity (SDIA), the molecular basis of which is currently unknown. Stimulation of ES/PA6 co-cultures with Bone Morphogenetic Protein 4 (BMP4) both favoured self-renewal of ES cells and…

Stromal cellCellular differentiationMyocytes Smooth MuscleNotch signaling pathwaylcsh:MedicineDevelopmental SignalingTretinoinEmbryoid bodyBiologyCell LineMesoderm03 medical and health sciencesMice0302 clinical medicineRetinoic Acid Signaling CascadeMolecular Cell BiologyExpressió genèticaAnimalslcsh:ScienceBiologyEmbryonic Stem Cells030304 developmental biology0303 health sciencesMultidisciplinaryReceptors NotchStem Cellslcsh:RComputational BiologyCell DifferentiationNestinSignaling in Selected DisciplinesMolecular biologyEmbryonic stem cellSignaling CascadesSignaling NetworksP19 cellBone morphogenetic protein 4embryonic structuresBone Morphogenetic Proteinslcsh:QCellular TypesStromal CellsTranscriptomeCèl·lules mare030217 neurology & neurosurgeryResearch ArticleDevelopmental BiologySignal Transduction
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Stem cell populations in the heart and the role of Isl1 positive cells

2013

Cardiac progenitor cells are multipotent stem cells isolated from both embryonic and adult hearts in several species and are able to differentiate at least into smooth muscle cells, endothelial cells and cardiomyocytes. The embryonic origin of these cells has not yet been demonstrated, but it has been suggested that these cells may derive from the first and secondary heart fields and from the neural crest. In the last decade, two diffe-rent populations of cardiac progenitor or stem cells have been identified and isolated, i.e., the Islet1 positive (Isl1+) and c-Kit positive (c-Kit+)/Stem Cell Antigen-1 positive (Sca-1+) cells. Until 2012, these two populations have been considered two separ…

lineagesHistologymuscleLIM-Homeodomain ProteinsBiophysicscardiac progenitor cellsheartBiologycardiac progenitor cells stem cells heart lineages biology muscle.stem cellsHumansProgenitor celllcsh:QH301-705.5Induced stem cellsViews and CommentsbiologySettore BIO/16 - Anatomia UmanaMyocardiumCell BiologyCell biologyEndothelial stem cellP19 celllcsh:Biology (General)Gene Expression RegulationMultipotent Stem CellAmniotic epithelial cellsImmunologycardiac progenitor cells stem-cells heart lineages biology muscle.Stem cellAdult stem cellTranscription Factors
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