0000000000455318

AUTHOR

María C Ovejero-benito

0000-0003-4082-5165

showing 2 related works from this author

Neuronal cell cycle: the neuron itself and its circumstances.

2015

Neurons are usually regarded as postmitotic cells that undergo apoptosis in response to cell cycle reactivation. Nevertheless, recent evidence indicates the existence of a defined developmental program that induces DNA replication in specific populations of neurons, which remain in a tetraploid state for the rest of their adult life. Similarly, de novo neuronal tetraploidization has also been described in the adult brain as an early hallmark of neurodegeneration. The aim of this review is to integrate these recent developments in the context of cell cycle regulation and apoptotic cell death in neurons. We conclude that a variety of mechanisms exists in neuronal cells for G1/S and G2/M check…

ApoptosisBrdU 5-bromo-2′-deoxyuridineReviewp75NTR neurotrophin receptor p75Nervous SystemG0 quiescent stateCKI Cdk-inhibitorNeuronsCell DeathNeurodegenerationCell CycleapoptosisNeurodegenerative DiseasesCell cycleCell biologymedicine.anatomical_structureInk inhibitor of kinaseBDNF brain-derived neurotrophic factorp38MAPK p38 mitogen-activated protein kinaseG2 growth phase 2Programmed cell deathS-phasePD Parkinson diseaseRb RetinoblastomaMcm2 minichromosome maintenance 2PCNA proliferating cell nuclear antigenMitosisContext (language use)BiologyCdk cyclin-dependent kinaseCNS central nervous systemS-phase synthesis phase.Cip/Kip cyclin inhibitor protein/kinase inhibitor proteinmedicineAnimalsHumansMolecular BiologyMitosisTetraploidAD Alzheimer diseasecell cycle re-entryDNA replicationCell BiologyNeuronmedicine.diseaseG1 growth phase 1neuronRGCs retinal ganglion cellsCell cycle re-entrytetraploidnervous systemApoptosisNeuronDevelopmental BiologyCell cycle (Georgetown, Tex.)
researchProduct

p27Kip1participates in the regulation of endoreplication in differentiating chick retinal ganglion cells

2015

Nuclear DNA duplication in the absence of cell division (i.e. endoreplication) leads to somatic polyploidy in eukaryotic cells. In contrast to some invertebrate neurons, whose nuclei may contain up to 200,000-fold the normal haploid DNA amount (C), polyploid neurons in higher vertebrates show only 4C DNA content. To explore the mechanism that prevents extra rounds of DNA synthesis in these latter cells we focused on the chick retina, where a population of tetraploid retinal ganglion cells (RGCs) has been described. We show that differentiating chick RGCs that express the neurotrophic receptors p75 and TrkB while lacking retinoblastoma protein, a feature of tetraploid RGCs, also express p27K…

Retinal Ganglion CellsretinaEndocycleCell divisionCellular differentiationChick EmbryoRetinoblastoma ProteinendoreduplicationMicevertebrateRNA Small InterferingpolyploidyMice KnockoutRGCeducation.field_of_studyCell DifferentiationEndoreduplicationCell cycleImmunohistochemistryNuclear DNAendocycleneurogenesiscell cycleRNA InterferenceCyclin-Dependent Kinase Inhibitor p27NeurogenesisPopulationDown-RegulationCell cycleBiologyRetinal ganglionRetinaPolyploidyReportAnimalsReceptor trkBEndoreduplicationeducationMolecular BiologyPloidiesDNA synthesisVertebrateCyclin-Dependent Kinase 4Cyclin-Dependent Kinase 6Cell BiologyMinichromosome Maintenance Complex Component 7Molecular biologyeye diseasessense organsChickensDevelopmental BiologyCell Cycle
researchProduct