MicroRNA-34a upregulation during seizure-induced neuronal death

T Sano1, J P Reynolds, E M Jimenez-Mateos

  • 1Department of Physiology and Medical Physics, Royal College of Surgeons in Ireland, Dublin, Ireland.

Cell Death & Disease
|March 23, 2012
PubMed

Insights

MicroRNAs (miRNAs) are key regulators of gene expression. This study found that while seizures increase miR-34a levels in the hippocampus, this miRNA is not essential for seizure-induced neuronal death.

Area of Science:

  • Neuroscience
  • Molecular Biology
  • Genetics

Background:

  • MicroRNAs (miRNAs) are noncoding RNAs regulating gene expression post-transcriptionally.
  • miR-34a is a p53-regulated miRNA potentially involved in cell death control.
  • Seizures activate p53, and p53-deficient mice show resistance to seizure-induced damage.

Purpose of the Study:

  • To investigate the role of miR-34a in seizure-induced neuronal death in vivo.
  • To determine if miR-34a upregulation during seizures is p53-dependent.

Main Methods:

  • Status epilepticus induced via intra-amygdala kainic acid injection in mice.
  • Measurement of miR-34a levels and its target protein (MAP3K9) post-seizure.
  • Assessment of miR-34a's role using p53 inhibition (pifithrin-α) and miR-34a inhibition (antagomirs).

Main Results:

  • Seizures caused rapid, localized upregulation of miR-34a in hippocampal subfields (CA3, CA1).
  • This upregulation was associated with decreased levels of its target, MAP3K9.
  • p53 inhibition prevented miR-34a upregulation.
  • Inhibition of miR-34a did not prevent neuronal death in models of status epilepticus.

Conclusions:

  • Prolonged seizures induce p53-dependent, temporally restricted miR-34a upregulation in specific hippocampal regions.
  • Despite this, miR-34a does not appear to play a critical role in seizure-induced neuronal death in this model.