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首页> 外文期刊>Bipolar disorders. >Systematic genetic analyses of genome‐wide association study data reveal an association between the key nucleosome remodeling and deacetylase complex and bipolar disorder development
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Systematic genetic analyses of genome‐wide association study data reveal an association between the key nucleosome remodeling and deacetylase complex and bipolar disorder development

机译:基因组关联研究数据的系统遗传分析揭示了关键核心重塑与脱乙酰酶复合物与双相情感发育的关联

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摘要

Background Genome‐wide association studies ( GWASs ) are used to identify genetic variants for association with bipolar disorder ( BD ) risk; however, each GWAS can only reveal a small fraction of this association. This study systematically analyzed multiple GWAS data sets to provide further insights into potential causal BD processes by integrating the results of Psychiatric Genomics Consortium Phase I ( PGC ‐I) for BD with core human pathways and functional networks. Methods The i‐Gsea4GwasV2 program was used to analyze data from the PGC ‐I GWAS for BD (the pathways came from Reactome), as well as the nominally significant pathways. We established a gene network of the significant pathways and performed a gene set analysis for each gene cluster of the Enhancing Neuroimaging Genetics through Meta‐Analysis ( ENIGMA ) GWAS data for the volumes of the intracranial region and seven subcortical regions. Results A total of 30 of 1816 Reactome pathways were identified and showed associations with BD risk. We further revealed 22 interconnected functional and topologically interacting clusters (Clusters 0‐21) that were associated with BD risk. Moreover, we obtained brain transcriptome data from BrainSpan and found significant associations between common variants of the genes in Cluster 1 with the hippocampus ( HIP ; P? = ? .026; family‐wise error [ FWE ] correction) and amygdala ( AMY ; P? = ? .016; FEW correction) in Cluster 8 with HIP ( P? = ? .022; FWE correction). The genes in Cluster 1 ?were ?enriched? for the transcriptional?co‐expression?profile?in the?prenatal AMY , and core genes ( CDH 4, MTA 2 , RBBP 4 , and HDAC 2 ) were identified to be involved in regulating early brain development. Conclusion This study demonstrated that the HIP and AMY play a central role in neurodevelopment and BD risk.
机译:背景技术基因组 - 宽协会研究(GWASS)用于鉴定与双相障碍(BD)风险相关的遗传变体;然而,每个GWA只能揭示这种关联的一小部分。本研究通过将BD的精神科学基因组和PGC-II)与核心人体途径和功能网络相结合,系统地分析了多个GWAS数据集,以进一步了解潜在的因果BD过程。方法使用I-GSEA4GWASV2程序用于分析来自BD的PGC -I GWA的数据(途径来自反应的途径),以及名义上显着的途径。我们建立了显着途径的基因网络,并通过Meta分析(eniigma)GWAS数据对颅内地区和七个皮质区域的量来进行增强神经影像遗传学的每个基因集群的基因集分析。结果鉴定了1816个反应途径中的30个,并显示出与BD风险的关联。我们进一步揭示了与BD风险相关的互连的功能和拓扑相互作用簇(簇0-21)。此外,我们从BRINSPAN获得了脑转录组数据,并发现了与海马群中的基因的常见变体之间的显着关联(HIP; P?=?.026;家庭明智的错误[FWE]校正)和Amygdala(amy; p ?=?.016;少量校正)在群体8中,臀部(p?=Δ022; fwe校正)。簇1中的基因?是?富含?对于转录?共同表达?概况?在α产前艾米和核基因(CDH 4,MTA 2,RBBP 4和HDAC 2)中鉴定参与调节早期脑发育。结论本研究表明,髋关节和艾米在神经发育和BD风险中起着核心作用。

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  • 来源
    《Bipolar disorders.》 |2018年第4期|共11页
  • 作者单位

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Medical Laboratory CenterAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Clinical LaboratorySu zhou Guang ji HospitalSuzhou Jiangsu Province China;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

    Department of PsychiatryAffiliated Hospital of Southwest Medical UniversityLuzhou Sichuan Province;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学与精神病学;
  • 关键词

    bipolar disorder risk; bipolar disorder; gene clusters; gene regulation; genome‐wide association studies;

    机译:双相情绪风险;双相情感障碍;基因簇;基因调控;基因组 - 范围协会研究;

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