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.

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.