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Updated: Sep 25, 2025

Strategies for Assessing Autistic-Like Behaviors in Mice
Published on: September 20, 2024
The Absence of Caspase-8 in the Dopaminergic System Leads to Mild Autism-like Behavior
I Suárez-Pereira1,2, I García-Domínguez3, L Bravo1,2
1Centro de Investigación Biomédica en Red de Salud Mental (CIBERSAM), Instituto de Salud Carlos III, Sevilla, Spain.
Abstract:
In the last decade, new non-apoptotic roles have been ascribed to apoptotic caspases. This family of proteins plays an important role in the sculpting of the brain in the early stages of development by eliminating excessive and nonfunctional synapses and extra cells. Consequently, impairments in this process can underlie many neurological and mental illnesses. This view is particularly relevant to dopamine because it plays a pleiotropic role in motor control, motivation, and reward processing. In this study, we analyze the effects of the elimination of caspase-8 (CASP8) on the development of catecholaminergic neurons using neurochemical, ultrastructural, and behavioral tests. To do this, we selectively delete the CASP8 gene in cells that express tyrosine hydroxylase with the help of recombination through the Cre-loxP system. Our results show that the number of dopaminergic neurons increases in the substantia nigra. In the striatum, the basal extracellular level of dopamine and potassium-evoked dopamine release decreased significantly in mice lacking CASP8, clearly showing the low dopamine functioning in tissues innervated by this neurotransmitter. This view is supported by electron microscopy analysis of striatal synapses. Interestingly, behavioral analysis demonstrates that mice lacking CASP8 show changes reminiscent of autism spectrum disorders (ASD). Our research reactivates the possible role of dopamine transmission in the pathogenesis of ASD and provides a mild model of autism.
Insights
Deleting caspase-8 (CASP8) in developing neurons increases dopamine neuron numbers but impairs dopamine release, leading to autism-like behaviors in mice.
Area of Science:
- Neuroscience
- Developmental Biology
- Genetics
Background:
- Apoptotic caspases have non-apoptotic roles in brain development, crucial for synaptic pruning and cell elimination.
- Impaired caspase function is linked to neurological and mental illnesses.
- Dopamine's role in motor control, motivation, and reward processing is well-established.
Purpose of the Study:
- To investigate the impact of eliminating caspase-8 (CASP8) on catecholaminergic neuron development.
- To analyze neurochemical, ultrastructural, and behavioral changes in mice lacking CASP8.
Main Methods:
- Selective deletion of the CASP8 gene in tyrosine hydroxylase-expressing cells using the Cre-loxP system.
- Neurochemical assays to measure dopamine levels and release.
- Ultrastructural analysis of synapses using electron microscopy.
- Behavioral tests to assess neurological function.
Main Results:
- Increased dopaminergic neuron count in the substantia nigra.
- Reduced basal extracellular dopamine levels and potassium-evoked dopamine release in the striatum.
- Ultrastructural evidence of altered striatal synapses.
- Behavioral changes resembling autism spectrum disorders (ASD) in CASP8-deficient mice.
Conclusions:
- Caspase-8 plays a critical role in dopamine neuron development and function.
- Loss of CASP8 leads to dopamine deficiency and autism-like behaviors.
- This study highlights a potential link between dopamine transmission and ASD pathogenesis, offering a model for autism research.
Related Concept Videos
Autism Spectrum Disorder
These core symptoms manifest differently among individuals, ranging from mild to severe. The disorder's complexity extends beyond its clinical presentation, encompassing a diverse range of biological, cognitive, and sociocultural influences.
Caspases

