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首页> 外文期刊>Human Molecular Genetics >Deletion of CTNNB1 in inhibitory circuitry contributes to autism-associated behavioral defects
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Deletion of CTNNB1 in inhibitory circuitry contributes to autism-associated behavioral defects

机译:在抑制性电路中删除CTNNB1会导致自闭症相关的行为缺陷

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Mutations in beta-catenin (CTNNB1) have been implicated in cancer and mental disorders. Recently, loss-of-function mutations of CTNNB1 were linked to intellectual disability (ID), and rare mutations were identified in patients with autism spectrum disorder (ASD). As a key regulator of the canonical Wnt pathway, CTNNB1 plays an essential role in neurodevelopment. However, the function of CTNNB1 in specific neuronal subtypes is unclear. To understand how CTNNB1 deficiency contributes to ASD, we generated CTNNB1 conditional knockout (cKO) mice in parvalbumin interneurons. The cKO mice had increased anxiety, but had no overall change in motor function. Interestingly, CTNNB1 cKO in PV-interneurons significantly impaired object recognition and social interactions and elevated repetitive behaviors, which mimic the core symptoms of patients with ASD. Surprisingly, deleting CTNNB1 in parvalbumin-interneurons enhanced spatial memory. To determine the effect of CTNNB1 KO in overall neuronal activity, we found that c-Fos was significantly reduced in the cortex, but not in the dentate gyrus and the amygdala. Our findings revealed a cell type-specific role of CTNNB1 gene in regulation of cognitive and autistic-like behaviors. Thus, this study has important implications for development of therapies for ASDs carrying the CTNNB1 mutation or other ASDs that are associated with mutations in the Wnt pathway. In addition, our study contributes to a broader understanding of the regulation of the inhibitory circuitry.
机译:β-catenin(CTNNB1)的突变与癌症和精神疾病有关。最近,CTNNB1的功能丧失突变与智障(ID)相关,在自闭症谱系障碍(ASD)患者中发现了罕见的突变。作为经典Wnt通路的关键调控因子,CTNNB1在神经发育中起着至关重要的作用。但是,尚不清楚CTNNB1在特定神经元亚型中的功能。为了了解CTNNB1缺乏如何导致ASD,我们在小白蛋白中间神经元中生成了CTNNB1条件性敲除(cKO)小鼠。 cKO小鼠的焦虑增加,但运动功能没有整体改变。有趣的是,PV-interneurons中的CTNNB1 cKO大大削弱了对象识别和社交互动,并提高了重复行为,从而模仿了ASD患者的核心症状。令人惊讶的是,删除小白蛋白-interneurons中的CTNNB1增强了空间记忆。为了确定CTNNB1 KO在总体神经元活动中的作用,我们发现c-Fos在皮质中显着降低,但在齿状回和杏仁核中却没有降低。我们的发现揭示了CTNNB1基因在认知和自闭症行为调控中的细胞类型特异性作用。因此,这项研究对于携带CTNNB1突变的ASD或与Wnt途径突变相关的其他ASD的疗法开发具有重要意义。此外,我们的研究有助于更广泛地理解抑制性电路的调节。

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