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RNA-seq analysis of amygdala tissue reveals characteristic expression profiles in schizophrenia

机译:杏仁核组织的RNA序列分析揭示了精神分裂症的特征性表达谱

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摘要

The amygdala brain region has been implicated in the pathophysiology of schizophrenia through emotion processing. However, transcriptome messages in the amygdala of schizophrenia patients have not been well studied. We used RNA sequencing to investigate gene-expression profiling in the amygdala tissues, and identified 569 upregulated and 192 downregulated genes from 22 schizophrenia patients and 24 non-psychiatric controls. Gene functional enrichment analysis demonstrated that the downregulated genes were enriched in pathways such as 'synaptic transmission' and 'behavior', whereas the upregulated genes were significantly over-represented in gene ontology pathways such as 'immune response' and 'blood vessel development'. Co-expression-based gene network analysis identified seven modules including four modules significantly associated with 'synaptic transmission', 'blood vessel development' or 'immune responses'. Taken together, our study provides novel insights into the molecular mechanism of schizophrenia, suggesting that precision-tailored therapeutic approaches aimed at normalizing the expression/function of specific gene networks could be a promising option in schizophrenia.
机译:杏仁核的大脑区域已通过情感处理参与了精神分裂症的病理生理。然而,精神分裂症患者杏仁核中的转录组信息尚未得到很好的研究。我们使用RNA测序来研究杏仁核组织中的基因表达谱,并从22位精神分裂症患者和24位非精神病患者中鉴定出569个上调基因和192个下调基因。基因功能富集分析表明,下调的基因在“突触传递”和“行为”等途径中富集,而上调的基因在“免疫应答”和“血管发育”等基因本体论途径中明显过量表达。基于共表达的基因网络分析确定了七个模块,其中包括与“突触传递”,“血管发育”或“免疫应答”显着相关的四个模块。综上所述,我们的研究为精神分裂症的分子机制提供了新颖的见解,表明旨在针对特定基因网络的表达/功能进行标准化的精确量身定制的治疗方法在精神分裂症中可能是一个有前途的选择。

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