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Gene set enrichment analysis and expression pattern exploration implicate an involvement of neurodevelopmental processes in bipolar disorder

机译:基因设定浓缩分析和表达模式探索涉及神经发育过程在双相情感障碍中的涉及

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摘要

Bipolar disorder (BD) is a common and highly heritable disorder of mood. Genome-wide association studies (GWAS) have identified several independent susceptibility loci. In order to extract more biological information from GWAS data, multi-locus approaches represent powerful tools since they utilize knowledge about biological processes to integrate functional sets of genes at strongly to moderately associated loci.We conducted gene set enrichment analyses (GSEA) using 2.3 million single-nucleotide polymorphisms, 397 Reactome pathways and 24,025 patients with BD and controls. RNA expression of implicated individual genes and gene sets were examined in post-mortem brains across lifespan.Two pathways showed a significant enrichment after correction for multiple comparisons in the GSEA: GRB2 events in ERBB2 signaling, for which 6 of 21 genes were BD associated (PFDR = 0.0377), and NCAM signaling for neurite out-growth, for which 11 out of 62 genes were BD associated (PFDR = 0.0451). Most pathway genes showed peaks of RNA co-expression during fetal development and infancy and mapped to neocortical areas and parts of the limbic system.Pathway associations were technically reproduced by two methods, although they were not formally replicated in independent samples. Gene expression was explored in controls but not in patients.Pathway analysis in large GWAS data of BD and follow-up of gene expression patterns in healthy brains provide support for an involvement of neurodevelopmental processes in the etiology of this neuropsychiatric disease. Future studies are required to further evaluate the relevance of the implicated genes on pathway functioning and clinical aspects of BD.
机译:双相情感障碍(BD)是一种常见的和高度遗传的情绪。基因组 - 范围协会研究(GWAS)已经确定了几个独立的敏感性基因座。为了从GWAS数据中提取更多的生物学信息,多基因座方法代表强大的工具,因为它们利用了生物过程的知识,以强烈地将功能组基因集成到中等相关的基因座。我们使用230万进行了基因设定富集分析(GSEA)单核苷酸多态性,397型反应途径和24,025例BD和对照患者。在杀死杀死后杀死后致鼠后杀死血管癌中的RNA表达。在GSEA:GRB2信号中的GSEA中的多重比较校正后,术后途径显示出显着的富集,其中21个基因中的6个基因是BD相关的( PFDR = 0.0377)和NCAM信号用于神经突渗出的NCAM信号传导,其中62个基因中的11个是BD相关的(PFDR = 0.0451)。大多数途径基因在胎儿发育和婴儿期间显示RNA共同表达的峰,并映射到新皮质区域和肢体系统的部分。通过两种方法技术繁殖,尽管它们在独立样品中没有正式复制。对照组探讨了基因表达,但在患者中探讨了。BD的大GWAS数据中的肺结气分析和健康大脑中基因表达模式的随访提供了对神经精神疾病的病因的涉及神经发育过程的支持。未来的研究是必需的,以进一步评估含有基因对BD的途径和临床方面的相关基因的相关性。

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