Early-life stress impairs developmental programming in Cadherin 13 (CDH13)-deficient mice

Dominik P Kiser1, Sandy Popp1, Angelika G Schmitt-Böhrer2

  • 1Division of Molecular Psychiatry, Center of Mental Health, University of Würzburg, Germany.

Insights

Cadherin-13 (CDH13) deficiency alters responses to early-life stress, impairing adaptation and increasing anxiety-like behaviors in mice. CDH13 plays a crucial role in stress resilience and neuroprotection.

Area of Science:

  • Neuroscience
  • Genetics

Background:

  • Cadherin-13 (CDH13) is implicated in neurodevelopmental disorders and depression.
  • CDH13 influences synaptic function and neuronal migration.
  • CDH13 expression is modulated by stress and depression.

Purpose of the Study:

  • To investigate the interaction between CDH13 variation and early-life stress (neonatal maternal separation - MS).
  • To assess the impact of CDH13 deficiency on behavioral responses to stress.

Main Methods:

  • Utilized wild-type, heterozygous, and homozygous Cdh13 knockout mice exposed to MS or handling.
  • Conducted a battery of behavioral tests (motor activity, learning, memory, anxiety).
  • Performed hippocampal transcriptome analysis.

Main Results:

  • Cdh13 knockout mice exhibited increased anxiety-like behavior and impaired fear extinction after MS.
  • Sex differences were observed in locomotor activity and impulsivity.
  • Transcriptome analysis revealed alterations in cell adhesion and ER function pathways.

Conclusions:

  • CDH13 deficiency disrupts adaptation to early-life stress, diminishing stress resilience.
  • CDH13 acts as a neuroprotective factor and mediates cell-cell interactions.
  • Findings highlight CDH13's role in programming and adapting to early-life stress.
Abstract

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