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Developmental regulation of expression of schizophrenia susceptibility genes in the primate hippocampal formation

机译:灵长类海马结构中精神分裂症易感基因表达的发育调控

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The hippocampal formation is essential for normal memory function and is implicated in many neurodevelopmental, neurodegenerative and neuropsychiatric disorders. In particular, abnormalities in hippocampal structure and function have been identified in schizophrenic subjects. Schizophrenia has a strong polygenic component, but the role of numerous susceptibility genes in normal brain development and function has yet to be investigated. Here we described the expression of schizophrenia susceptibility genes in distinct regions of the monkey hippocampal formation during early postnatal development. We found that, as compared with other genes, schizophrenia susceptibility genes exhibit a differential regulation of expression in the dentate gyrus, CA3 and CA1, over the course of postnatal development. A number of these genes involved in synaptic transmission and dendritic morphology exhibit a developmental decrease of expression in CA3. Abnormal CA3 synaptic organization observed in schizophrenics might be related to some specific symptoms, such as loosening of association. Interestingly, changes in gene expression in CA3 might occur at a time possibly corresponding to the late appearance of the first clinical symptoms. We also found earlier changes in expression of schizophrenia susceptibility genes in CA1, which might be linked to prodromal psychotic symptoms. A number of schizophrenia susceptibility genes including APOE, BDNF, MTHFR and SLC6A4 are involved in other disorders, and thus likely contribute to nonspecific changes in hippocampal structure and function that must be combined with the dysregulation of other genes in order to lead to schizophrenia pathogenesis.. ? 2012 Macmillan Publishers Limited
机译:海马形成对于正常的记忆功能至关重要,并与许多神经发育,神经退行性疾病和神经精神疾病有关。特别是,在精神分裂症患者中已经发现海马结构和功能异常。精神分裂症具有很强的多基因成分,但是许多易感基因在正常大脑发育和功能中的作用尚待研究。在这里,我们描述了在出生后早期发育过程中,精神分裂症易感基因在猴海马区不同区域的表达。我们发现,与其他基因相比,精神分裂症易感性基因在产后发育过程中在齿状回,CA3和CA1中表现出不同的表达调节。这些涉及突触传递和树突形态的许多基因显示出在CA3中表达的发育下降。精神分裂症中观察到的CA3突触组织异常可能与某些特定症状有关,例如联想松动。有趣的是,CA3基因表达的变化可能发生在可能对应于第一个临床症状出现较晚的时间。我们还发现了CA1中精神分裂症易感基因表达的早期变化,这可能与前驱性精神病症状有关。许多精神分裂症易感基因,包括APOE,BDNF,MTHFR和SLC6A4,都与其他疾病有关,因此可能导致海马结构和功能的非特异性改变,必须与其他基因的失调结合才能导致精神分裂症的发病。 ? 2012 Macmillan Publishers Limited

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