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Published on: May 3, 2017
Developmental impact of glutamate transporter overexpression on dopaminergic neuron activity and stereotypic behavior
Muhammad O Chohan1,2, Jared M Kopelman3,4, Hannah Yueh1,2
1Department of Psychiatry, Columbia University, New York, NY, USA.
Insights
Increased expression of the glutamate transporter EAAT3 (SLC1A1) during development drives compulsive behaviors in mice by altering dopamine signaling. Reversing this overexpression in adulthood normalizes these effects, suggesting EAAT3 as a potential therapeutic target.
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Obsessive-compulsive disorder (OCD) is a childhood-onset condition linked to SLC1A1, encoding the glutamate transporter EAAT3.
- Increased EAAT3 expression is a potential risk factor for OCD.
- The dopaminergic system is implicated in OCD, and Slc1a1 may influence compulsive behavior via this system.
Purpose of the Study:
- To investigate the developmental role of Slc1a1/EAAT3 overexpression in compulsive-like behaviors.
- To mechanistically test the hypothesis that Slc1a1 affects compulsive behavior through dopaminergic transmission.
Main Methods:
- Generated a novel mouse model for targeted, reversible Slc1a1 overexpression in dopaminergic neurons.
- Assessed amphetamine (AMPH)-induced stereotypy and hyperlocomotion.
- Performed single-unit recordings and dLight1.1 fiber photometry to measure neuronal firing and dopamine release.
Main Results:
- Life-long Slc1a1 overexpression increased AMPH-induced stereotypy and hyperlocomotion.
- Overexpression led to increased dopaminergic neuron firing and dorsal striatum dopamine release.
- Developmental overexpression was necessary for these phenotypes, and adult reversal normalized the abnormalities.
Conclusions:
- Pathologic effects of Slc1a1/EAAT3 overexpression on dopaminergic neurotransmission and AMPH-induced behaviors are developmentally mediated.
- Normalization of EAAT3 activity is a potential therapeutic target for basal ganglia-mediated repetitive behaviors.
Abstract:
Obsessive-compulsive disorder (OCD) is a disabling condition that often begins in childhood. Genetic studies in OCD have pointed to SLC1A1, which encodes the neuronal glutamate transporter EAAT3, with evidence suggesting that increased expression contributes to risk. In mice, midbrain Slc1a1 expression supports repetitive behavior in response to dopaminergic agonists, aligning with neuroimaging and pharmacologic challenge studies that have implicated the dopaminergic system in OCD. These findings suggest that Slc1a1 may contribute to compulsive behavior through altered dopaminergic transmission; however, this theory has not been mechanistically tested. To examine the developmental impact of Slc1a1 overexpression on compulsive-like behaviors, we, therefore, generated a novel mouse model to perform targeted, reversible overexpression of Slc1a1 in dopaminergic neurons. Mice with life-long overexpression of Slc1a1 showed a significant increase in amphetamine (AMPH)-induced stereotypy and hyperlocomotion. Single-unit recordings demonstrated that Slc1a1 overexpression was associated with increased firing of dopaminergic neurons. Furthermore, dLight1.1 fiber photometry showed that these behavioral abnormalities were associated with increased dorsal striatum dopamine release. In contrast, no impact of overexpression was observed on anxiety-like behaviors or SKF-38393-induced grooming. Importantly, overexpression solely in adulthood failed to recapitulate these behavioral phenotypes, suggesting that overexpression during development is necessary to generate AMPH-induced phenotypes. However, doxycycline-induced reversal of Slc1a1/EAAT3 overexpression in adulthood normalized both the increased dopaminergic firing and AMPH-induced responses. These data indicate that the pathologic effects of Slc1a1/EAAT3 overexpression on dopaminergic neurotransmission and AMPH-induced stereotyped behavior are developmentally mediated, and support normalization of EAAT3 activity as a potential treatment target for basal ganglia-mediated repetitive behaviors.
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