Search results for "SOXB1 Transcription Factor"

showing 10 items of 25 documents

Lineage-reprogramming of Pericyte-derived Cells of the Adult Human Brain into Induced Neurons

2014

Direct lineage-reprogramming of non-neuronal cells into induced neurons (iNs) may provide insights into the molecular mechanisms underlying neurogenesis and enable new strategies for in vitro modeling or repairing the diseased brain. Identifying brain-resident non-neuronal cell types amenable to direct conversion into iNs might allow for launching such an approach in situ, i.e. within the damaged brain tissue. Here we describe a protocol developed in the attempt of identifying cells derived from the adult human brain that fulfill this premise. This protocol involves: (1) the culturing of human cells from the cerebral cortex obtained from adult human brain biopsies; (2) the in vitro expansio…

Cell typePatch-Clamp TechniquesGeneral Chemical EngineeringCell Culture TechniquesBiologyGeneral Biochemistry Genetics and Molecular BiologySOX2Transduction GeneticmedicineHumansCell LineageCerebral CortexNeuronsGeneral Immunology and MicrobiologyGeneral NeuroscienceSOXB1 Transcription FactorsNeurogenesisHuman brainCell sortingCellular ReprogrammingFlow CytometryImmunohistochemistrymedicine.anatomical_structureRetroviridaeCell culturePericytePericytesNeuroscienceReprogrammingNeuroscience
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Cyclin-dependent kinase inhibitor p21 controls adult neural stem cell expansion by regulating Sox2 gene expression.

2012

Summary In the adult brain, continual neurogenesis of olfactory neurons is sustained by the existence of neural stem cells (NSCs) in the subependymal niche. Elimination of the cyclin-dependent kinase inhibitor 1A (p21) leads to premature exhaustion of the subependymal NSC pool, suggesting a relationship between cell cycle control and long-term self-renewal, but the molecular mechanisms underlying NSC maintenance by p21 remain unexplored. Here we identify a function of p21 in the direct regulation of the expression of pluripotency factor Sox2, a key regulator of the specification and maintenance of neural progenitors. We observe that p21 directly binds a Sox2 enhancer and negatively regulate…

Cèl·lules mare neuralsCyclin-Dependent Kinase Inhibitor p21Chromatin ImmunoprecipitationImmunoblottingArticle03 medical and health sciencesMice0302 clinical medicineSOX2Neural Stem CellsCyclin-dependent kinaseNeurosphereSubependymal zoneGeneticsExpressió genèticaAnimalsProgenitor cellCells Cultured030304 developmental biology0303 health sciencesbiologyCell growthReverse Transcriptase Polymerase Chain ReactionSOXB1 Transcription FactorsNeurogenesisCell BiologyImmunohistochemistryNeural stem cellMice Mutant Strains3. Good healthAdult Stem Cellsnervous systemCancer researchbiology.proteinMolecular Medicinebiological phenomena cell phenomena and immunity030217 neurology & neurosurgeryProtein BindingCell stem cell
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Sox2-Mediated Conversion of NG2 Glia into Induced Neurons in the Injured Adult Cerebral Cortex

2014

Summary The adult cerebral cortex lacks the capacity to replace degenerated neurons following traumatic injury. Conversion of nonneuronal cells into induced neurons has been proposed as an innovative strategy toward brain repair. Here, we show that retrovirus-mediated expression of the transcription factors Sox2 and Ascl1, but strikingly also Sox2 alone, can induce the conversion of genetically fate-mapped NG2 glia into induced doublecortin (DCX)+ neurons in the adult mouse cerebral cortex following stab wound injury in vivo. In contrast, lentiviral expression of Sox2 in the unlesioned cortex failed to convert oligodendroglial and astroglial cells into DCX+ cells. Neurons induced following …

Doublecortin ProteinGene ExpressionBiochemistryArticleMiceSOX2Cortex (anatomy)Basic Helix-Loop-Helix Transcription FactorsGeneticsmedicineAnimalslcsh:QH301-705.5Cell ProliferationCerebral CortexNeuronslcsh:R5-920biologySOXB1 Transcription FactorsCell BiologyAnatomySynaptic PotentialsCellular ReprogrammingDoublecortinASCL1medicine.anatomical_structurelcsh:Biology (General)nervous systemCerebral cortexCell Transdifferentiationbiology.proteinNeurogliaNeuNlcsh:Medicine (General)NeurogliaReprogrammingNeuroscienceDevelopmental BiologyStem Cell Reports
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Gene expression of stem cells at different stages of ontological human development.

2013

Abstract Objectives To compare multipotent mesenchymal stem cells (MSCs) obtained from chorionic villi (CV), amniotic fluid (AF) and placenta, with regard to their phenotype and gene expression, in order to understand if MSCs derived from different extra-embryonic tissues, at different stages of human ontological development, present distinct stemness characteristics. Study design MSCs obtained from 30 samples of CV, 30 of AF and 10 placentas (obtained from elective caesarean sections) were compared. MSCs at second confluence cultures were characterized by immunophenotypic analysis with flow cytometry using FACS CANTO II. The expression of the genes Oct-4 (Octamer-binding transcription fact…

Homeobox protein NANOGAdultPAX6 Transcription FactorKruppel-Like Transcription FactorsBiologyFetal DevelopmentYoung AdultMesenchymal stem cells; Extra-embryonic tissues; Gene expressionPregnancyGene expressionHumansPaired Box Transcription FactorsCD90Eye ProteinsMesenchymal stem cellHomeodomain ProteinsExtra-embryonic tissueSOXB1 Transcription FactorsMesenchymal stem cellObstetrics and GynecologyGene Expression Regulation DevelopmentalMesenchymal Stem CellsNanog Homeobox ProteinMiddle AgedAmniotic FluidMolecular biologyRepressor ProteinsHaematopoiesisSettore MED/18 - Chirurgia GeneraleReal-time polymerase chain reactionReproductive Medicineembryonic structuresFemaleRNA extractionGene expressionStem cellChorionic VilliOctamer Transcription Factor-3European journal of obstetrics, gynecology, and reproductive biology
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Zfp819, a novel KRAB-zinc finger protein, interacts with KAP1 and functions in genomic integrity maintenance of mouse embryonic stem cells

2013

AbstractPluripotency is maintained by both known and unknown transcriptional regulatory networks. In the present study, we have identified Zfp819, a KRAB-zinc finger protein, as a novel pluripotency-related factor and characterized its role in pluripotent stem cells. We show that Zfp819 is expressed highly in various types of pluripotent stem cells but not in their differentiated counterparts. We identified the presence of non-canonical nuclear localization signals in particular zinc finger motifs and identified them as responsible for the nuclear localization of Zfp819. Analysis of the Zfp819 promoter region revealed the presence of a transcriptionally active chromatin signature. Moreover,…

Homeobox protein NANOGMolecular Sequence DataEndogenous retrovirusBiologyTripartite Motif-Containing Protein 28Cell LineHistones03 medical and health sciencesMice0302 clinical medicineSOX2AnimalsAmino Acid SequenceRNA Small InterferingInduced pluripotent stem cellPromoter Regions GeneticEmbryonic Stem Cells030304 developmental biologyTranscriptionally active chromatinZinc fingerMedicine(all)Cell NucleusHomeodomain Proteins0303 health sciencesSOXB1 Transcription FactorsNuclear ProteinsCell DifferentiationGeneral MedicineCell BiologyNanog Homeobox ProteinMolecular biologyEmbryonic stem cellUp-RegulationDNA-Binding ProteinsRepressor Proteins030220 oncology & carcinogenesisCarrier ProteinsOctamer Transcription Factor-3Nuclear localization sequenceDevelopmental BiologyDNA DamageProtein BindingStem Cell Research
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Global and gene-specific histone modification profiles of mouse multipotent adult germline stem cells

2010

We previously reported the generation of multipotent adult germline stem cells (maGSCs) from spermatogonial stem cells (SSCs) isolated from adult mouse testis. In a later study, we substantiated the pluripotency of maGSCs by demonstrating their close similarity to pluripotent male embryonic stem cells (ESCs) at the epigenetic level of global and gene-specific DNA methylation. Here, we extended the comparative epigenetic analysis of maGSCs and male ESCs by investigating the second main epigenetic modification in mammals, i.e. global and gene-specific modifications of histones (H3K4 trimethylation, H3K9 acetylation, H3K9 trimethylation and H3K27 trimethylation). Using immunofluorescence stain…

MaleHomeobox protein NANOGChromatin ImmunoprecipitationEmbryologyAdult Germline Stem CellsBlotting WesternFluorescent Antibody TechniqueBiologyMethylationPolymerase Chain ReactionCell LineEpigenesis GeneticHistonesMice03 medical and health sciences0302 clinical medicineSOX2GeneticsAnimalsEpigenetics10. No inequalityMolecular Biology030304 developmental biologyHomeodomain Proteins0303 health sciencesGenomeMultipotent Stem CellsSOXB1 Transcription FactorsObstetrics and GynecologyAcetylationNanog Homeobox ProteinCell BiologyFlow CytometryMolecular biologySpermatogoniaChromatinReproductive Medicineembryonic structuresH3K4me3Octamer Transcription Factor-3Chromatin immunoprecipitation030217 neurology & neurosurgeryDevelopmental BiologyBivalent chromatinMolecular Human Reproduction
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FM19G11, a New Hypoxia-inducible Factor (HIF) Modulator, Affects Stem Cell Differentiation Status

2009

The biology of the alpha subunits of hypoxia-inducible factors (HIF alpha) has expanded from their role in angiogenesis to their current position in the self-renewal and differentiation of stem cells. The results reported in this article show the discovery of FM19G11, a novel chemical entity that inhibits HIF alpha proteins that repress target genes of the two alpha subunits, in various tumor cell lines as well as in adult and embryonic stem cell models from rodents and humans, respectively. FM19G11 inhibits at nanomolar range the transcriptional and protein expression of Oct4, Sox2, Nanog, and Tgf-alpha undifferentiating factors, in adult rat and human embryonic stem cells, FM19G11 activit…

MaleHomeobox protein NANOGTranscription GeneticCellular differentiationBiologyResponse ElementsBenzoatesBiochemistryHistonesRats Sprague-DawleyMolecular Basis of Cell and Developmental BiologySOX2EpendymaBasic Helix-Loop-Helix Transcription FactorsAnimalsHumansp300-CBP Transcription FactorsMolecular BiologyEmbryonic Stem CellsHomeodomain ProteinsRegulation of gene expressionSOXB1 Transcription FactorsAcetylationCell DifferentiationNanog Homeobox ProteinCell BiologyTransforming Growth Factor alphaHypoxia-Inducible Factor 1 alpha SubunitMolecular biologyEmbryonic stem cellCell HypoxiaRatsCell biologyAdult Stem CellsGene Expression RegulationPharmaceutical PreparationsBenzamidesStem cellOctamer Transcription Factor-3Chromatin immunoprecipitationHeLa CellsAdult stem cellJournal of Biological Chemistry
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Sox-2 Positive Neural Progenitors in the Primate Striatum Undergo Dynamic Changes after Dopamine Denervation.

2013

The existence of endogenous neural progenitors in the nigrostriatal system could represent a powerful tool for restorative therapies in Parkinson's disease. Sox-2 is a transcription factor expressed in pluripotent and adult stem cells, including neural progenitors. In the adult brain Sox-2 is expressed in the neurogenic niches. There is also widespread expression of Sox-2 in other brain regions, although the neurogenic potential outside the niches is uncertain. Here, we analyzed the presence of Sox-2(+) cells in the adult primate (Macaca fascicularis) brain in naïve animals (N = 3) and in animals exposed to systemic administration of 1-methyl-4-phenyl-1,2,3,6 tetrahydropyridine to render th…

MalePathologyDopamineFluorescent Antibody Techniquelcsh:MedicineDopaminaStriatumchemistry.chemical_compoundNeural Stem CellsNeurobiology of Disease and RegenerationSox-2 PositiveNeurocièncieslcsh:Scienceeducation.field_of_studyMultidisciplinaryMPTPStem CellsCell DifferentiationNeurochemistryNeurodegenerative DiseasesParkinson DiseaseAnimal ModelsDopamine DenervationDenervationSubstantia NigraAdult Stem CellsNeurologyembryonic structuresMedicineNeural ProgenitorsCalretininNeurochemicalsMacaqueAdult stem cellmedicine.drugResearch Articlemedicine.medical_specialtyendocrine systemNeurogenesisPopulationSubstantia nigraModel OrganismsDevelopmental NeuroscienceDopamineInternal medicinemedicineAnimalsProgenitor celleducationBiologyurogenital systemSOXB1 Transcription Factorslcsh:RCorrectionCorpus StriatumMacaca fascicularisEndocrinologychemistrynervous systemlcsh:QDevelopmental BiologyNeurosciencePLoS ONE
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The Adult Pituitary Shows Stem/Progenitor Cell Activation in Response to Injury and Is Capable of Regeneration

2012

The pituitary gland constitutes, together with the hypothalamus, the regulatory core of the endocrine system. Whether the gland is capable of cell regeneration after injury, in particular when suffered at adult age, is unknown. To investigate the adult pituitary's regenerative capacity and the response of its stem/progenitor cell compartment to damage, we constructed a transgenic mouse model to conditionally destroy pituitary cells. GHCre/iDTR mice express diphtheria toxin (DT) receptor after transcriptional activation by Cre recombinase, which is driven by the GH promoter. Treatment with DT for 3 d leads to gradual GH+ (somatotrope) cell obliteration with a final ablation grade of 80–90% 1…

Malemedicine.medical_specialtyPituitary glandTime FactorsSomatotropic cellMice TransgenicBiologyMiceEndocrinologySOX2Internal medicinemedicineAnimalsRegenerationCell LineageProgenitor cellPromoter Regions GeneticSOXB1 Transcription FactorsStem CellsDeoxyuridineEndothelial stem cellEndocrinologymedicine.anatomical_structureGrowth HormonePituitary GlandIntercellular Signaling Peptides and ProteinsFemaleStem cellHeparin-binding EGF-like Growth FactorAdult stem cellEndocrine glandEndocrinology
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Prognostic value of SOX2 expression in neuroblastoma.

2010

Oncogene ProteinsCancer ResearchN-Myc Proto-Oncogene Proteinbusiness.industrySOXB1 Transcription FactorsValue (computer science)InfantNuclear ProteinsBiologyExpression (computer science)medicine.diseasePrognosisN-Myc Proto-Oncogene ProteinNeuroblastomaText miningSOX2NeuroblastomaGeneticsCancer researchmedicineHumansbusinessGenes, chromosomescancer
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