Etiology of a genetically complex seizure disorder in Celf4 mutant mice

J L Wagnon1, C L Mahaffey, W Sun

  • 1The Jackson Laboratory, Bar Harbor, ME 04609-1500, USA.

Insights

Mice lacking the RNA-binding protein CELF4 (CUGBP, ELAV-like family member 4) exhibit complex epilepsy. CELF4 deficiency in excitatory neurons alters neurotransmission, leading to seizures.

Area of Science:

  • Neuroscience
  • Genetics
  • Molecular Biology

Background:

  • CUGBP, ELAV-like family member 4 (CELF4) is an RNA-binding protein.
  • CELF proteins are involved in translational control and neuronal function.
  • CELF4 is expressed in the adult central nervous system and its deficiency models complex epilepsy.

Purpose of the Study:

  • To investigate the role of CELF4 in the etiology of seizures in Celf4 deficient mice.
  • To determine the specific neuronal populations and developmental timing critical for CELF4's role in seizure development.

Main Methods:

  • Conditional knockout of Celf4 in mice at different ages and in specific neuronal populations.
  • Analysis of seizure incidence and phenotype.
  • Patch-clamp electrophysiology to measure excitatory and inhibitory neurotransmission.
  • Immunohistochemistry to determine CELF4 expression patterns.

Main Results:

  • Convulsive seizures result from Celf4 deletion in adulthood, while non-convulsive seizures require deletion before the first postnatal week.
  • Selective deletion of Celf4 in excitatory neurons (but not inhibitory neurons) of the cortex and hippocampus lowers seizure threshold.
  • Celf4 deficient mice exhibit altered excitatory neurotransmission but normal inhibitory neurotransmission.
  • CELF4 is predominantly expressed in excitatory neurons.

Conclusions:

  • CELF4 plays a critical role in regulating excitatory neurotransmission.
  • Altered excitatory neurotransmission due to Celf4 deficiency underlies the complex seizure disorder observed in mutant mice.
  • CELF4 is a key regulator of neuronal function and excitability.