首页> 美国卫生研究院文献>Translational Psychiatry >Rare damaging variants in DNA repair and cell cycle pathways are associated with hippocampal and cognitive dysfunction: a combined genetic imaging study in first-episode treatment-naive patients with schizophrenia
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Rare damaging variants in DNA repair and cell cycle pathways are associated with hippocampal and cognitive dysfunction: a combined genetic imaging study in first-episode treatment-naive patients with schizophrenia

机译:DNA修复和细胞周期途径中罕见的破坏性变异与海马和认知功能障碍有关:一项针对初次治疗的初次精神分裂症患者的基因影像学联合研究

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摘要

Schizophrenia is a complex neurodevelopmental disorder where changes in both hippocampus and memory-related cognitive functions are central. However, the exact relationship between neurodevelopmental-genetic factors and hippocampal-cognitive dysfunction remains unclear. The general aim of our study is to link the occurrence of rare damaging mutations involved in susceptibility gene pathways to the structure and function of hippocampus in order to define genetically and phenotypically based subgroups in schizophrenia. In the present study, by analyzing the exome sequencing and magnetic resonance imaging data in 94 first-episode treatment-naive schizophrenia patients and 134 normal controls, we identified that a cluster of rare damaging variants (RDVs) enriched in DNA repair and cell cycle pathways was present only in a subgroup including 39 schizophrenic patients. Furthermore, we found that schizophrenic patients with this RDVs show increased resting-state functional connectivity (rsFC) between left hippocampus (especially for left dentate gyrus) and left inferior parietal cortex, as well as decreased rsFC between left hippocampus and cerebellum. Moreover, abnormal rsFC was related to the deficits of spatial working memory (SWM; that is known to recruit the hippocampus) in patients with the RDVs. Taken together, our data demonstrate for the first time, to our knowledge, that damaging rare variants of genes in DNA repair and cell cycle pathways are associated with aberrant hippocampal rsFC, which was further relative to cognitive deficits in first-episode treatment-naive schizophrenia. Therefore, our data provide some evidence for the occurrence of phenotypic alterations in hippocampal and SWM function in a genetically defined subgroup of schizophrenia.
机译:精神分裂症是一种复杂的神经发育障碍,其中海马的变化和与记忆有关的认知功能均处于中心地位。但是,神经发育遗传因素与海马认知功能障碍之间的确切关系仍不清楚。我们研究的总体目的是将涉及易感性基因途径的罕见破坏性突变的发生与海马的结构和功能联系起来,以定义基于精神和表型的精神分裂症亚组。在本研究中,通过分析94例初次治疗的未患精神分裂症患者和134例正常对照的外显子组测序和磁共振成像数据,我们确定了一簇罕见的破坏性变体(RDV)富含DNA修复和细胞周期途径仅存在于包括39个精神分裂症患者的亚组中。此外,我们发现患有此RDV的精神分裂症患者显示左海马体(尤其是左齿状回)和左下顶叶皮层之间的静息状态功能连接(rsFC)增加,并且左海马体与小脑之间的rsFC降低。此外,具有RDV的患者中,异常rsFC与空间工作记忆(SWM;已知募集海马)的缺陷有关。综上所述,我们的数据首次证明,据我们所知,DNA修复和细胞周期途径中的罕见基因变异与海马rsFC异常有关,这进一步与首次治疗的初次精神分裂症患者的认知缺陷有关。 。因此,我们的数据为遗传定义的精神分裂症亚组中海马和SWM功能表型改变的发生提供了一些证据。

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