The nuclear retention of transcription factor FOXO3a correlates with a DNA damage response and increased glutamine synthetase expression by astrocytes suggesting a neuroprotective role in the ageing brain

Neurosci Lett. 2015 Nov 16:609:11-7. doi: 10.1016/j.neulet.2015.10.001. Epub 2015 Oct 8.

Abstract

The accumulation of reactive oxygen species leading to oxidative damage and cell death plays an important role in a number of neurodegenerative disorders. FOXO3a, the main isoform of FOXO transcription factors, mediates the cellular response to oxidative stress by regulating the expression of genes involved in DNA repair and glutamine metabolism, including glutamine synthetase (GS). Immunohistochemical investigation of the population-based neuropathology cohort of the Medical Research Council's Cognitive Function and Ageing Study (MRC CFAS) demonstrates that nuclear retention of FOXO3a significantly correlates with a DNA damage response and with GS expression by astrocytes. Furthermore, we show that GS expression correlates with increasing Alzheimer-type pathology in this ageing cohort. Our findings suggest that in response to oxidative stress, the nuclear retention of FOXO3a in astrocytes upregulates expression of GS as a neuroprotective mechanism. However, the activity of GS may be compromised by increasing levels of oxidative stress in the ageing brain resulting in dysfunctional enzyme activity, neuronal excitotoxic damage and cognitive impairment.

Keywords: Ageing brain; Alzheimer’s; Astrocyte; DNA damage response; FOXO3a; Glutamine synthetase; Pathology; neurone.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Aged
  • Aged, 80 and over
  • Alzheimer Disease / metabolism
  • Alzheimer Disease / pathology
  • Astrocytes / metabolism*
  • Brain / metabolism*
  • Cell Nucleus / metabolism*
  • DNA Damage*
  • Dementia / metabolism*
  • Dementia / pathology
  • Female
  • Forkhead Box Protein O3
  • Forkhead Transcription Factors / metabolism*
  • Gliosis / metabolism
  • Gliosis / pathology
  • Glutamate-Ammonia Ligase / metabolism*
  • Humans
  • Male
  • Temporal Lobe / metabolism
  • Temporal Lobe / pathology

Substances

  • FOXO3 protein, human
  • Forkhead Box Protein O3
  • Forkhead Transcription Factors
  • Glutamate-Ammonia Ligase