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首页> 外文期刊>Molecular and cellular neurosciences >Disrupted in Schizophrenia 1 and Nudel form a neurodevelopmentally regulated protein complex: implications for schizophrenia and other major neurological disorders
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Disrupted in Schizophrenia 1 and Nudel form a neurodevelopmentally regulated protein complex: implications for schizophrenia and other major neurological disorders

机译:在精神分裂症1和Nudel中被破坏形成神经发育调节的蛋白复合物:对精神分裂症和其他主要神经系统疾病的影响

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Disrupted In Schizophrenia 1 (DISC1) was identified as a potential susceptibility gene for schizophrenia due to its disruption by a balanced t(1;11) (q42;q14) translocation, which has been shown to cosegregate with major psychiatric disease in a large Scottish family. We have demonstrated that DISC1 exists in a neurodevelopmentally regulated protein complex with Nudel. The complex is abundant at E17 and in early postnatal life but is greatly reduced in the adult. Nudel has previously been shown to bind Lis1, a gene underlying lissencephaly in humans. Critically, we show that the predicted peptide product resulting from the Scottish translocation removes the interaction domain for Nudel. DISC1 interacts with Nudel through a leucine zipper domain and binds to a novel DISC1-interaction domain on Nudel, which is independent from the Lis1 binding site. We show that Nudel is able to act as a bridge between DISC1 and Lis1 to allow formation of a trimolecular complex. Nudel has been implicated to play a role in neuronal migration, together with the developmental variation in the abundance of the DISC1-Nudel complex, may implicate a defective DISC1-Nudel complex as a neurodevelopmental cause of schizophrenia.
机译:精神分裂症1(DISC1)的中断被认为是精神分裂症的潜在易感基因,因为它通过平衡的t(1; 11)(q42; q14)易位而被破坏,在大型苏格兰人中它已与主要的精神疾病共分离家庭。我们已经证明DISC1与Nudel存在于神经发育调节蛋白复合物中。该复合物在E17和产后早期很丰富,但在成年人中则大大减少。 Nudel先前已显示与Lis1结合,Lis1是人类lissencephaly的基础基因。至关重要的是,我们表明,由苏格兰易位产生的预测肽产物将删除Nudel的相互作用域。 DISC1通过亮氨酸拉链结构域与Nudel相互作用,并与Nudel上新的DISC1相互作用结构域结合,该结构独立于Lis1结合位点。我们表明,Nudel能够充当DISC1和Lis1之间的桥梁,以允许形成三分子复合物。 Nudel已被暗示在神经元迁移中起作用,以及DISC1-Nudel复合体丰度的发展变化,可能暗示DISC1-Nudel复合体缺陷是精神分裂症的神经发育原因。

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