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Glycogen synthase kinase-3 is essential for β-arrestin-2 complex formation and lithium-sensitive behaviors in mice

机译:糖原合酶激酶3对于小鼠中β-arrestin-2复合物的形成和锂敏感行为至关重要

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摘要

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.
机译:锂是双相情感障碍的一线疗法。然而,其治疗目标仍存在争议。候选物质包括肌醇单磷酸酶,糖原合酶激酶3(GSK-3)和β-arrestin-2/ AKT /蛋白质磷酸酶2A(β-arrestin-2/ AKT / PP2A)复合物,已知锂-敏感行为。定义直接靶标对于​​开发新疗法和阐明这种主要精神病的分子发病机制至关重要。在这里,我们展示了我们认为是小鼠中GSK-3和β-arrestin-2复合物之间的新联系,并提出了一种综合机制来解释锂对多种行为的影响。 GSK-3β(Gsk3b)过表达逆转了在锂治疗小鼠中观察到的行为缺陷,并且在Gsk3b +/– 小鼠中观察到了类似的行为。此外,WT小鼠的纹状体组织的免疫沉淀显示,锂通过直接抑制GSK-3破坏了β-arrestin-2/ Akt / PP2A复合物。 GSK-3抑制剂或丢失一个Gsk3b基因拷贝减少了小鼠中β-arrestin-2/ Akt / PP2A复合物的形成,而过表达Gsk3b则恢复了锂处理小鼠中复合物的形成。因此,GSK-3调节β-arrestin-2/ Akt / PP2A复合物的稳定性,锂通过直接抑制GSK-3破坏复合物。我们相信这些发现揭示了GSK-3在β-arrestin复合物中的新作用,并证明GSK-3是锂在哺乳动物行为中的重要靶标。

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