Zac1 Regulates the Differentiation and Migration of Neocortical Neurons via Pac1

Lata Adnani1, Lisa Marie Langevin1, Elodie Gautier2

  • 1Departments of Biochemistry and Molecular Biology, Alberta Children's Hospital Research Institute, Hotchkiss Brain Institute, University of Calgary, Calgary, Alberta, Canada, T2N 4N1.

Insights

The imprinted gene Zac1 is crucial for normal brain development. Its misexpression in mice disrupts neural cell development and migration, potentially explaining neurocognitive deficits in certain growth disorders.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Genetics

Background:

  • Imprinted genes are dosage-sensitive, and their dysregulation causes growth disorders with neurodevelopmental defects.
  • Aberrant expression of growth-associated imprinted genes in the embryonic central nervous system (CNS) can directly impact neurodevelopment.
  • Zac1 (a maternally imprinted gene) is implicated in growth rates and intellectual disability in humans.

Purpose of the Study:

  • To investigate the role of the imprinted gene Zac1 in neural lineage progression and neocortical development.
  • To determine if Zac1 misexpression directly perturbs neurodevelopment in a mouse model.
  • To elucidate the molecular mechanisms by which Zac1 influences neuronal migration and differentiation.

Main Methods:

  • Misexpression of Zac1 in murine neocortical progenitors.
  • Analysis of neural lineage progression, cell differentiation, and neuronal migration.
  • Zac1 knockdown experiments to assess precise expression level requirements.
  • Investigation of Zac1's regulatory role in Pac1 transcription.

Main Results:

  • Zac1 misexpression delayed the transition of radial glial cells to neuronal progenitors and postponed neuronal differentiation.
  • Overexpression of Zac1 blocked neuronal migration, causing increased pausing and reduced neurite branching.
  • Zac1 knockdown also induced neuronal migration and morphological defects, highlighting the need for precise regulation.
  • Zac1 controlled neuronal migration by regulating the transcription of Pac1, a receptor for pituitary adenylate cyclase-activating polypeptide (PACAP).

Conclusions:

  • Dysregulated Zac1 expression significantly impacts neocortical development.
  • Aberrant Zac1 levels in the brain may contribute to neurocognitive deficits observed in certain growth disorders.
  • Zac1 acts as a critical regulator of neocortical development, influencing neuronal migration and differentiation through Pac1 regulation.