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Updated: Jul 17, 2026

Developing a Rat Model for Bipolar Disorder
Published on: May 2, 2025
Beta-catenin overexpression in the mouse brain phenocopies lithium-sensitive behaviors
Todd D Gould1, Haim Einat, Kelley C O'Donnell
1Laboratory of Molecular Pathophysiology, National Institute of Mental Health, National Institutes of Health, Bethesda, MD 20892-3711, USA.
Abstract:
Lithium inhibits glycogen synthase kinase-3 (GSK-3) at therapeutic concentrations; however, it is unclear if this inhibition and its downstream effects on specific signaling pathways are relevant to the treatment of bipolar disorder and depression. One of the targets of GSK-3 is the transcription factor beta-catenin. Normally active GSK-3 phosphorylates beta-catenin, leading to its degradation. Inhibition of GSK-3 therefore increases beta-catenin. We have utilized transgenic mice to investigate the behavioral consequences of CNS beta-catenin overexpression. Transgenic mice overexpressing beta-catenin demonstrated behavioral changes similar to those observed following the administration of lithium, including decreased immobility time in the forced swim test (FST). Further, we show that although acute administration of lithium and overexpression of the beta-catenin transgene inhibits d-amphetamine-induced hyperlocomotion, neither lithium nor the beta-catenin transgene prevents d-amphetamine-induced sensitization, as measured by locomotor activity. Both lithium-treated and beta-catenin mice had an elevated response to d-amphetamine following multiple administrations of the stimulant, though the difference in absolute locomotion was maintained throughout the sensitization time-course. Neither acute lithium nor beta-catenin overexpression had an effect on d-amphetamine-induced stereotyped behavior. The results of this study, in which beta-catenin transgenic mice exhibited behaviors identical to those observed in lithium-treated mice, are consistent with the hypothesis that the behavioral effects of lithium in these models are mediated through its direct inhibition of GSK-3 and the consequent increase in beta-catenin. By associating the behavioral effects of lithium with beta-catenin levels, these data suggest that increasing beta-catenin might be a novel therapeutic strategy for mood disorders.
Insights
Lithium treatment for bipolar disorder may work by increasing beta-catenin levels in the brain. This study shows that mice with higher beta-catenin exhibit similar behaviors to those treated with lithium, suggesting a new therapeutic strategy.
Area of Science:
- Neuroscience
- Pharmacology
- Molecular Biology
Background:
- Lithium is a mood stabilizer for bipolar disorder, acting by inhibiting glycogen synthase kinase-3 (GSK-3).
- The precise downstream effects of GSK-3 inhibition relevant to mood disorders remain unclear.
- GSK-3 normally degrades the transcription factor beta-catenin; its inhibition increases beta-catenin levels.
Purpose of the Study:
- To investigate the behavioral effects of central nervous system (CNS) beta-catenin overexpression.
- To determine if increased beta-catenin mimics lithium's behavioral effects.
- To explore the role of beta-catenin in lithium's action on amphetamine-induced behaviors.
Main Methods:
- Utilized transgenic mice overexpressing beta-catenin in the CNS.
- Administered lithium to wild-type mice.
- Assessed behavioral responses, including forced swim test and amphetamine-induced locomotion and sensitization.
Main Results:
- Beta-catenin overexpressing mice showed decreased immobility in the forced swim test, similar to lithium-treated mice.
- Both lithium and beta-catenin overexpression inhibited acute amphetamine-induced hyperlocomotion.
- Neither intervention prevented amphetamine-induced sensitization, but both elevated the response to repeated amphetamine administration.
Conclusions:
- Behavioral effects observed in lithium-treated mice are replicated by CNS beta-catenin overexpression.
- These findings support the hypothesis that lithium's therapeutic effects are mediated by GSK-3 inhibition and subsequent beta-catenin increase.
- Increasing beta-catenin presents a potential novel therapeutic strategy for mood disorders like bipolar disorder and depression.

