Chronic Alcohol Exposure Decreases 53BP1 Protein Levels Leading to a Defective DNA Repair in Cultured Primary Cortical Neurons

Fecha de publicación:

Autores de IIS La Fe

Participantes ajenos a IIS La Fe

  • Palanca, A
  • Ruiz-Soto, M
  • Llorca, J
  • Berciano, MT
  • Lafarga, M

Abstract

Chronic alcohol consumption may cause neurodevelopmental and neurodegenerative disorders. Alcohol neurotoxicity is associated with the production of acetaldehyde and reactive oxygen species that induce oxidative DNA damage. However, the molecular mechanisms by which ethanol disturbs the DNA damage response (DDR), resulting in a defective DNA repair, remain unknown. Here, we have used cultured primary cortical neurons exposed to 50 or 100 mM ethanol for 7 days to analyze the ethanol-induced DDR. Ethanol exposure produced a dose-dependent generation of double strand breaks and the formation of DNA damage foci immunoreactive for the histone gamma H2AX, a DNA damage marker, and for the ubiquitylated H2A, which is involved in chromatin remodeling at DNA damage sites. Importantly, these DNA damage foci failed to recruit the protein 53BP1, a crucial DNA repair factor. This effect was associated with a drop in 53BP1 mRNA and protein levels and with an inhibition of global transcription. Moreover, ethanol-exposed neurons treated with ionizing radiation (2 Gy) also failed to recruit 53BP1 at DNA damage foci and exhibited a greater vulnerability to DNA lesions than irradiated control neurons. Our results support that defective DNA repair, mediated by the deficient expression and recruitment of 53BP1 to DNA damage sites, represents a novel mechanism involved in ethanol neurotoxicity. The design of therapeutic strategies that increase or stabilize 53BP1 levels might potentially promote DNA repair and partially compensate alcohol neurotoxicity.

Datos de la publicación

ISSN/ISSNe:
1029-8428, 1476-3524

NEUROTOXICITY RESEARCH  SPRINGER

Tipo:
Article
Páginas:
69-79
PubMed:
26264240
Factor de Impacto:
1,142 SCImago
Cuartil:
Q1 SCImago

Citas Recibidas en Web of Science: 6

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Keywords

  • Ethanol neurotoxicity; DNA damage; 53BP1; Defective DNA repair; Neurodegeneration

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Investigador Principal: JUAN JESÚS VÍLCHEZ PADILLA

C03/06 . INSTITUTO DE SALUD CARLOS III . 2003

CONTRATO DE TECNICO DE APOYO A LA INVESTIGACION EN EL SISTEMA NACIONAL DE SALUD

CA12/00329 . INSTITUTO DE SALUD CARLOS III; FUNDACIÓN PARA LA INVESTIGACIÓN DEL HOSPITAL UNIVERSITARIO LA FE DE LA COMUNIDAD VALENCIANA . 2013

SEGUIMIENTO DE PACIENTES SOMETIDOS A TRASPLANTE CARDIACO. ESTUDIO DE MARCADORES DE RECHAZO IMPLICADOS EN EL TRANSPORTE NÚCLEO-CITOPLASMA.

Investigador Principal: ESTHER ROSELLÓ LLETÍ

PI14/01506 . INSTITUTO DE SALUD CARLOS III . 2015

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