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Published on: March 23, 2013
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.
Objective:
Cadherin-13 (CDH13), a member of the calcium-dependent cell adhesion molecule family, has been linked to neurodevelopmental disorders, including autism spectrum (ASD) and attention-deficit/hyperactivity (ADHD) disorders, but also to depression. In the adult brain, CDH13 expression is restricted e.g. to the presynaptic compartment of inhibitory GABAergic synapses in the hippocampus and Cdh13 knockout mice show an increased inhibitory drive onto hippocampal CA1 pyramidal neurons, leading to a shift in excitatory/inhibitory balance. CDH13 is also moderating migration of serotonergic neurons in the dorsal raphe nucleus, establishing projections preferentially to the thalamus and cerebellum during brain development. Furthermore, CDH13 is upregulated by chronic stress as well as in depression, suggesting a role in early-life adaptation to stressful experience. Here, we therefore investigated the interaction between Cdh13 variation and neonatal maternal separation (MS) in mice.
Methods:
Male and female wild-type (Cdh13+/+), heterozygous (Cdh13+/-) and homozygous (Cdh13-/-) knockout mice exposed to MS, or daily handling as control, were subjected to a battery of behavioural tests to assess motor activity, learning and memory as well as anxiety-like behaviour. A transcriptome analysis of the hippocampus was performed in an independent cohort of mice which was exposed to MS or handling, but remained naïve for behavioural testing.
Results:
MS lead to increased anxiety-like behaviour in Cdh13-/- mice compared to the other two MS groups. Cdh13-/- mice showed a context-dependent effect on stress- and anxiety-related behaviour, impaired extinction learning following contextual fear conditioning and decreased impulsivity, as well as a mild decrease in errors in the Barnes maze and reduced risk-taking in the light-dark transition test after MS. We also show sex differences, with increased locomotor activity in female Cdh13-/- mice, but unaltered impulsivity and activity in male Cdh13-/- mice. Transcriptome analysis revealed several pathways associated with cell surface/adhesion molecules to be altered following Cdh13 deficiency, together with an influence on endoplasmic reticulum function.
Conclusion:
MS resulted in increased stress resilience, increased exploration and an overall anxiolytic behavioural phenotype in male Cdh13+/+ and Cdh13+/- mice. Cdh13 deficiency, however, obliterated most of the effects caused by early-life stress, with Cdh13-/- mice exhibiting delayed habituation, no reduction of anxiety-like behaviour and decreased fear extinction. Our behavioural findings indicate a role of CDH13 in the programming of and adaptation to early-life stress. Finally, our transcriptomic data support the view of CDH13 as a neuroprotective factor as well as a mediator in cell-cell interactions, with an impact on synaptic plasticity.
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