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A mutation in mouse Disc1 that models a schizophrenia risk allele leads to specific alterations in neuronal architecture and cognition

机译:模仿精神分裂症风险等位基因的小鼠Disc1突变导致神经元结构和认知的特定改变

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摘要

DISC1 is a strong candidate susceptibility gene for schizophrenia, bipolar disorder, and depression. Using a mouse strain carrying an endogenous Disc1 orthologue engineered to model the putative effects of the disease-associated chromosomal translocation we demonstrate that impaired Disc1 function results in region-specific morphological alterations, including alterations in the organization of newly born and mature neurons of the dentate gyrus. Field recordings at CA3/CA1 synapses revealed a deficit in short-term plasticity. Using a battery of cognitive tests we found a selective impairment in working memory (WM), which may relate to deficits in WM and executive function observed in individuals with schizophrenia. Our results implicate malfunction of neural circuits within the hippocampus and medial prefrontal cortex and selective deficits in WM as contributing to the genetic risk conferred by this gene.
机译:DISC1是精神分裂症,躁郁症和抑郁症的强大候选易感基因。使用带有内源性Disc1直向同源物的小鼠品系,该小鼠品系经过工程设计以模拟与疾病相关的染色体易位的推定作用,我们证明受损的Disc1功能会导致区域特定的形态学改变,包括牙齿的新生和成熟神经元组织的改变回旋。 CA3 / CA1突触的现场记录显示短期可塑性不足。通过一系列认知测试,我们发现工作记忆(WM)选择性受损,这可能与精神分裂症患者中观察到的WM和执行功能缺陷有关。我们的结果暗示了海马和内侧前额叶皮层内神经回路的功能异常,以及WM的选择性缺陷,导致该基因的遗传风险。

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