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Genes and schizophrenia: beyond schizophrenia: the role of DISC1 in major mental illness.

机译:基因和精神分裂症:超越精神分裂症:DISC1在重大精神疾病中的作用。

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Schizophrenia and related disorders have a major genetic component, but despite much effort and many claims, few genes have been consistently replicated and fewer have biological support. One recent exception is "Disrupted in Schizophrenia 1" (DISC1), which was identified at the breakpoint on chromosome 1 of the balanced translocation (1;11)(q42.1;q14.3) that co-segregated in a large Scottish family with a wide spectrum of major mental illnesses. Since then, genetic analysis has implicated DISC1 in schizophrenia, schizoaffective disorder, bipolar affective disorder, and major depression. Importantly, evidence is emerging from genetic studies for a causal relationship between DISC1 and directly measurable trait variables such as working memory, cognitive aging, and decreased gray matter volume in the prefrontal cortex, abnormalities in hippocampal structure and function, and reduction in the amplitude of the P300 event-related potential. Further, DISC1 binds a number of proteins known to be involved in essential processes of neuronal function, including neuronal migration, neurite outgrowth, cytoskeletal modulation, and signal transduction. Thus, both genetic and functional data provide evidence for a critical role for DISC1 in schizophrenia and related disorders, supporting the neurodevelopmental hypothesis for the molecular pathogenesis of these devastating illnesses.
机译:精神分裂症和相关疾病具有主要的遗传成分,但是尽管付出了很多努力并提出了许多主张,但很少有人能够一致地复制基因,而很少有人获得生物学支持。最近的一个例外是“精神分裂症1的中断”(DISC1),该突变在一个苏格兰大家庭中共同隔离的平衡易位(1; 11)(q42.1; q14.3)的1号染色体的断点处发现患有多种重大精神疾病。从那时起,遗传分析已将DISC1与精神分裂症,精神分裂症,双相情感障碍和重度抑郁症联系起来。重要的是,从遗传学研究中发现的证据表明,DISC1与可直接测量的性状变量之间存在因果关系,例如工作记忆,认知衰老,前额叶皮层灰质体积减少,海马结构和功能异常以及振幅降低。与P300事件相关的潜力。此外,DISC1与许多已知参与神经元功能基本过程的蛋白质结合,包括神经元迁移,神经突向外生长,细胞骨架调节和信号转导。因此,遗传和功能数据都为DISC1在精神分裂症和相关疾病中的关键作用提供了证据,支持了这些破坏性疾病的分子发病机理的神经发育假说。

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