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Metabolic Labeling of Leucine Rich Repeat Kinases 1 and 2 with Radioactive Phosphate
Published on: September 18, 2013
Glycogen synthase kinase-3 is essential for β-arrestin-2 complex formation and lithium-sensitive behaviors in mice
W Timothy O'Brien1, Jian Huang, Roberto Buccafusca
1Department of Medicine, Hematology-Oncology, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania, USA.
Abstract:
Lithium is the first-line therapy for bipolar disorder. However, its therapeutic target remains controversial. Candidates include inositol monophosphatases, glycogen synthase kinase-3 (GSK-3), and a β-arrestin-2/AKT/protein phosphatase 2A (β-arrestin-2/AKT/PP2A) complex that is known to be required for lithium-sensitive behaviors. Defining the direct target(s) is critical for the development of new therapies and for elucidating the molecular pathogenesis of this major psychiatric disorder. Here, we show what we believe to be a new link between GSK-3 and the β-arrestin-2 complex in mice and propose an integrated mechanism that accounts for the effects of lithium on multiple behaviors. GSK-3β (Gsk3b) overexpression reversed behavioral defects observed in lithium-treated mice and similar behaviors observed in Gsk3b+/- mice. Furthermore, immunoprecipitation of striatial tissue from WT mice revealed that lithium disrupted the β-arrestin-2/Akt/PP2A complex by directly inhibiting GSK-3. GSK-3 inhibitors or loss of one copy of the Gsk3b gene reduced β-arrestin-2/Akt/PP2A complex formation in mice, while overexpression of Gsk3b restored complex formation in lithium-treated mice. Thus, GSK-3 regulates the stability of the β-arrestin-2/Akt/PP2A complex, and lithium disrupts the complex through direct inhibition of GSK-3. We believe these findings reveal a new role for GSK-3 within the β-arrestin complex and demonstrate that GSK-3 is a critical target of lithium in mammalian behaviors.
Insights
Lithium
Area of Science:
- Neuroscience
- Molecular Biology
- Psychiatry
Background:
- Lithium is a first-line treatment for bipolar disorder, but its precise molecular targets remain debated.
- Potential targets include inositol monophosphatases, glycogen synthase kinase-3 (GSK-3), and a β-arrestin-2/AKT/protein phosphatase 2A (PP2A) complex involved in lithium-sensitive behaviors.
Purpose of the Study:
- To investigate the role of GSK-3 in the β-arrestin-2/AKT/PP2A complex and its link to lithium's therapeutic effects.
- To elucidate the molecular mechanism by which lithium influences behavior through GSK-3 and the β-arrestin complex.
Main Methods:
- Utilizing GSK-3β (Gsk3b) overexpression and knockout mouse models.
- Employing immunoprecipitation of striatal tissue from wild-type (WT) mice.
- Assessing behavioral changes in response to lithium treatment and genetic manipulations.
Main Results:
- GSK-3β overexpression reversed behavioral deficits in lithium-treated and Gsk3b+/- mice.
- Lithium disrupted the β-arrestin-2/AKT/PP2A complex by directly inhibiting GSK-3.
- GSK-3 inhibition or loss of Gsk3b reduced complex formation, while Gsk3b overexpression restored it.
Conclusions:
- GSK-3 regulates the stability of the β-arrestin-2/AKT/PP2A complex.
- Lithium disrupts this complex via direct GSK-3 inhibition.
- GSK-3 is identified as a critical molecular target of lithium in mammalian behaviors.

