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首页> 外文期刊>Journal of Neurophysiology >Caveolin-1 regulation of disrupted-in-schizophrenia-1 as a potential therapeutic target for schizophrenia
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Caveolin-1 regulation of disrupted-in-schizophrenia-1 as a potential therapeutic target for schizophrenia

机译:Caveolin-1调节中断的精神分裂症-1作为精神分裂症的潜在治疗靶标

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Schizophrenia is a debilitating psychiatric disorder manifested in early adulthood. Disrupted-in-schizophrenia-1 (DISC1) is a susceptible gene for schizophrenia (Hodgkinson et al. 2004; Millar et al. 2000; St Clair et al. 1990) implicated in neuronal development, brain maturation, and neuroplasticity (Brandon and Sawa 2011; Chubb et al. 2008). Therefore, DISC1 is a promising candidate gene for schizophrenia, but the molecular mechanisms underlying its role in the pathogenesis of the disease are still poorly understood. Interestingly, caveolin-1 (Cav-1), a cholesterol binding and scaffolding protein, regulates neuronal signal transduction and promotes neuroplasticity. In this study we examined the role of Cav-1 in mediating DISC1 expression in neurons in vitro and the hippocampus in vivo. Overexpressing Cav-1 specifically in neurons using a neuron-specific synapsin promoter (SynCav1) increased expression of DISC1 and proteins involved in synaptic plasticity (PSD95, synaptobrevin, synaptophysin, neurexin, and syntaxin 1). Similarly, SynCav1-transfected differentiated human neurons derived from induced pluripotent stem cells (hiPSCs) exhibited increased expression of DISC1 and markers of synaptic plasticity. Conversely, hippocampi from Cav-1 knockout (KO) exhibited decreased expression of DISC1 and proteins involved in synaptic plasticity. Finally, SynCav1 delivery to the hippocampus of Cav-1 KO mice and Cav-1 KO neurons in culture restored expression of DISC1 and markers of synaptic plasticity. Furthermore, we found that Cav-1 coimmunoprecipitated with DISC1 in brain tissue. These findings suggest an important role by which neuron-targeted Cav-1 regulates DISC1 neurobiology with implications for synaptic plasticity. Therefore, SynCav1 might be a potential therapeutic target for restoring neuronal function in schizophrenia.
机译:精神分裂症是成年早期表现出的衰弱精神疾病。中断 - 精神分裂症 - 1(Disc1)是精神分裂症的易感基因(Hodgkinson等,2004; Millar等,2000; St Clair等,1990)涉及神经元发育,脑成熟和神经塑性(Brandon和Sawa 2011; Chubb等人。2008)。因此,DICK1是精神分裂症的有希望的候选基因,但其在疾病发病机制中的作用下面的分子机制仍然很差。有趣的是,Caveolin-1(Cav-1),胆固醇结合和支架蛋白,调节神经元信号转导并促进神经塑性。在这项研究中,我们研究了CAV-1在体外和海马中介导神经元中的Disc1表达中的作用。使用神经元特异性Synapsin启动子(SyncaV1)的神经元的过度表达CAV-1在突触塑性(PSD95,Synaptobrevin,Sypaptophysin,Neurexin和Syntaxin 1中涉及的Disc1和蛋白质表达增加。类似地,衍生自诱导多能干细胞(HIPSCs)的同步转染分化的人神经元表现出DICK1的表达增加和突触可塑性的标记。相反,来自CAV-1敲除(KO)的海马表现出Disc1和蛋白质的表达下降,参与突触可塑性。最后,Syncav1递送到CAV-1 KO小鼠的海马和CAV-1 KO神经元的培养恢复了DICK1的表达和突触塑性的标记。此外,我们发现CAV-1在脑组织中用DISC1 Cimmunoppippated化。这些发现表明神经元靶向CAV-1调节Disc1神经生物学的重要作用,这对突触可塑性的影响有影响。因此,SyncaV1可能是恢复精神分裂症中神经元功能的潜在治疗靶标。

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