Cortical Parvalbumin-Positive Interneuron Development and Function Are Altered in the APC Conditional Knockout Mouse

Rachael F Ryner1,2, Isabel D Derera1, Moritz Armbruster1

  • 1Department of Neuroscience, Tufts University School of Medicine, Boston, Massachusetts 02111.

Insights

Infantile and epileptic spasms syndrome (IESS) involves abnormal brain development. This study shows that disrupting APC in excitatory neurons leads to GABAergic interneuron dysfunction and altered brain activity, contributing to IESS.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Epilepsy Research

Background:

  • Infantile and epileptic spasms syndrome (IESS) is a severe childhood epilepsy with poorly understood causes and limited treatments.
  • Wnt/β-catenin signaling pathway dysregulation is linked to IESS risk genes and affects neuronal excitation.
  • Previous work established that deleting adenomatous polyposis coli (APC) in excitatory neurons causes IESS-like phenotypes in mice.

Purpose of the Study:

  • To investigate the impact of disrupted APC-mediated Wnt/β-catenin signaling on GABAergic interneuron development and function in a mouse model of IESS.
  • To determine if altered interneuron function contributes to the epilepsy and behavioral phenotypes observed in APC cKO mice.

Main Methods:

  • Utilized APC conditional knockout (cKO) mice with disrupted APC in excitatory neurons.
  • Assessed the development, morphology, and apoptosis of parvalbumin-positive (PV+) interneurons.
  • Electrophysiologically analyzed excitatory input onto PV+ interneurons and GABAergic transmission onto pyramidal neurons.

Main Results:

  • APC cKO mice exhibited reduced numbers of PV+ interneurons, increased developmental apoptosis, and altered dendritic morphology.
  • PV+ interneurons showed excessive excitatory input and impaired intrinsic excitability.
  • GABAergic transmission onto pyramidal neurons was altered across development, with both decreased and enhanced inhibitory postsynaptic currents observed.

Conclusions:

  • Disruption of APC in excitatory neurons leads to significant developmental and functional deficits in GABAergic interneurons.
  • These interneuron dysfunctions, alongside altered excitation, likely contribute to the spasms and epilepsy characteristic of IESS.
  • The findings highlight how excitatory neuron pathology can initiate long-term inhibitory circuit dysfunction, implicating GABAergic deficits in IESS pathogenesis.

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