0000000000256182

AUTHOR

Raquel Montalbán-loro

0000-0001-8048-2801

showing 4 related works from this author

Epigenetic regulation of stemness maintenance in the neurogenic niches

2015

In the adult mouse brain, the subventricular zone lining the lateral ventricles and the subgranular zone in the dentate gyrus of the hippocampus are two zones that contain neural stem cells (NSCs) with the capacity to give rise to neurons and glia during the entire life of the animal. Spatial and temporal regulation of gene expression in the NSCs population is established and maintained by the coordinated interaction between transcription factors and epigenetic regulators which control stem cell fate. Epigenetic mechanisms are heritable alterations in genome function that do not involve changes in DNA sequence itself but that modulate gene expression, acting as mediators between the environ…

Regulation of gene expressionHistologyEpigenetic ProcessEpigenetic regulation of neurogenesisNeurogenesisCell BiologyReviewBiologyBioinformaticsNeural stem cellCell biologynervous systemGeneticsEpigeneticsInduced pluripotent stem cellMolecular BiologyReprogrammingGenetics (clinical)
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Genomic Imprinting and the Regulation of Postnatal Neurogenesis

2017

Most genes required for mammalian development are expressed from both maternally and paternally inherited chromosomal homologues. However, there are a small number of genes known as “imprinted genes” that only express a single allele from one parent, which is repressed on the gene from the other parent. Imprinted genes are dependent on epigenetic mechanisms such as DNA methylation and post-translational modifications of the DNA-associated histone proteins to establish and maintain their parental identity. In the brain, multiple transcripts have been identified which show parental origin-specific expression biases. However, the mechanistic relationship with canonical imprinting is unknown. R…

0301 basic medicineGeneticsReviewBiologyGene dosage03 medical and health sciences030104 developmental biology0302 clinical medicineHistoneDNA methylationbiology.proteinGeneral Earth and Planetary SciencesEpigeneticsImprinting (psychology)AlleleGenomic imprintingGene030217 neurology & neurosurgeryGeneral Environmental ScienceBrain Plasticity
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Dlk1 dosage regulates hippocampal neurogenesis and cognition

2021

Significance Generation of new neurons occurs normally in the adult brain in two locations: the subventricular zone (SVZ) in the walls of the lateral ventricles and the subgranular zone (SGZ) in the dentate gyrus (DG) of the hippocampus. Neurogenesis in the adult hippocampus has been implicated in cognitive functions such as learning, memory, and recovery of stress response. Imprinted genes are highly prevalent in the brain and have adult and developmental important functions. Genetic deletion of the imprinted gene Dlk1 from either parental allele shows that DLK1 is a key mediator of quiescence in adult hippocampal NSCs. Additionally, Dlk1 is exquisitely dosage sensitive in the brain with p…

0301 basic medicinehippocampusHippocampusgene dosageBiologySubgranular zone03 medical and health sciencesMice0302 clinical medicineCognitionNeuroplasticitymedicineAnimalsEpigeneticsImprinting (psychology)AllelesMultidisciplinarybehaviorDentate gyrusNeurogenesisCalcium-Binding Proteinsneurogenesis genomic imprinting behavior gene dosage hippocampus424Biological Sciencesgenomic imprintingneurogenesis030104 developmental biologymedicine.anatomical_structurenervous systemGenomic imprintingNeuroscience030217 neurology & neurosurgeryNeuroscience
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TET3 prevents terminal differentiation of adult NSCs by a non-catalytic action at Snrpn.

2019

Ten-eleven-translocation (TET) proteins catalyze DNA hydroxylation, playing an important role in demethylation of DNA in mammals. Remarkably, although hydroxymethylation levels are high in the mouse brain, the potential role of TET proteins in adult neurogenesis is unknown. We show here that a non-catalytic action of TET3 is essentially required for the maintenance of the neural stem cell (NSC) pool in the adult subventricular zone (SVZ) niche by preventing premature differentiation of NSCs into non-neurogenic astrocytes. This occurs through direct binding of TET3 to the paternal transcribed allele of the imprinted gene Small nuclear ribonucleoprotein-associated polypeptide N (Snrpn), contr…

0301 basic medicineScienceCellular differentiationGeneral Physics and AstronomySubventricular zone02 engineering and technologyBiologyDNA-binding proteinArticleGeneral Biochemistry Genetics and Molecular BiologyCatalysissnRNP Core ProteinsDioxygenases03 medical and health sciencesMiceNeural Stem CellsLateral VentriclesProto-Oncogene ProteinsmedicineAnimalsRNA Small Interferinglcsh:SciencePsychological repressionreproductive and urinary physiologyMultidisciplinarySnRNP Core ProteinsQNeurogenesisBrainCell DifferentiationGeneral Chemistry021001 nanoscience & nanotechnologyNeural stem cellnervous system diseasesCell biologyDNA-Binding Proteins030104 developmental biologymedicine.anatomical_structurenervous systemAstrocyteslcsh:Qbiological phenomena cell phenomena and immunity0210 nano-technologyGenomic imprintingSignal Transduction
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