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Artículo

CDK5-mediated phosphorylation of p19INK4d avoids DNA damage-induced neurodegeneration in mouse hippocampus and prevents loss of cognitive functions

Ogara, Maria FlorenciaIcon ; Belluscio, Laura MaríaIcon ; de la Fuente, VerónicaIcon ; Berardino, Bruno GabrielIcon ; Sonzogni, Silvina VeronicaIcon ; Byk, Laura AndreaIcon ; Marazita, Mariela ClaudiaIcon ; Canepa, Eduardo TomasIcon
Fecha de publicación: 04/2014
Editorial: Elsevier
Revista: Biochimica et Biophysica Acta-Molecular Cell Research
ISSN: 0167-4889
e-ISSN: 1878-2434
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Otras Ciencias Biológicas

Resumen

DNA damage, which perturbs genomic stability, has been linked to cognitive decline in the aging human brain, and mutations in DNA repair genes have neurological implications. Several studies have suggested that DNA damage is also increased in brain disorders such as Alzheimer's disease, Parkinson's disease and amyotrophic lateral sclerosis. However, the precise mechanisms connecting DNA damage with neurodegeneration remain poorly understood. CDK5, a critical enzyme in the development of the central nervous system, phosphorylates a number of synaptic proteins and regulates dendritic spine morphogenesis, synaptic plasticity and learning. In addition to these physiological roles, CDK5 has been involved in the neuronal death initiated by DNA damage. We hypothesized that p19INK4d, a member of the cell cycle inhibitor family INK4, is involved in a neuroprotective mechanism activated in response to DNA damage. We found that in response to genotoxic injury or increased levels of intracellular calcium, p19INK4d is transcriptionally induced and phosphorylated by CDK5 which provides it with greater stability in postmitotic neurons. p19INK4d expression improves DNA repair, decreases apoptosis and increases neuronal survival under conditions of genotoxic stress. Our in vivo experiments showed that decreased levels of p19INK4d rendered hippocampal neurons more sensitive to genotoxic insult resulting in the loss of cognitive abilities that rely on the integrity of this brain structure. We propose a feedback mechanism by which the neurotoxic effects of CDK5-p25 activated by genotoxic stress or abnormal intracellular calcium levels are counteracted by the induction and stabilization of p19INK4d protein reducing the adverse consequences on brain functions
Palabras clave: Apoptosis , Beta Amyloid Peptide , Dna Damage , Learning And Memory , Neocarzinostatin , Neurodegeneration
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/28430
URL: http://www.sciencedirect.com/science/article/pii/S0167488914001104
DOI: https://doi.org/10.1016/j.bbamcr.2014.03.026
Colecciones
Articulos(IIBBA)
Articulos de INST.DE INVEST.BIOQUIMICAS DE BS.AS(I)
Articulos(OCA CIUDAD UNIVERSITARIA)
Articulos de OFICINA DE COORDINACION ADMINISTRATIVA CIUDAD UNIVERSITARIA
Citación
Ogara, Maria Florencia; Belluscio, Laura María; de la Fuente, Verónica; Berardino, Bruno Gabriel; Sonzogni, Silvina Veronica; et al.; CDK5-mediated phosphorylation of p19INK4d avoids DNA damage-induced neurodegeneration in mouse hippocampus and prevents loss of cognitive functions; Elsevier; Biochimica et Biophysica Acta-Molecular Cell Research; 1843; 7; 4-2014; 1309-1324
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