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情绪不稳定的基因组基础:在363705名英国生物银行参与者中鉴定出46个基因座,与精神疾病的遗传相关性,以及与基因表达和功能的关联。

The genomic basis of mood instability: identification of 46 loci in 363,705 UK Biobank participants, genetic correlation with psychiatric disorders, and association with gene expression and function.

作者信息

Ward Joey, Tunbridge Elizabeth M, Sandor Cynthia, Lyall Laura M, Ferguson Amy, Strawbridge Rona J, Lyall Donald M, Cullen Breda, Graham Nicholas, Johnston Keira J A, Webber Caleb, Escott-Price Valentina, O'Donovan Michael, Pell Jill P, Bailey Mark E S, Harrison Paul J, Smith Daniel J

机构信息

Institute of Health and Wellbeing, University of Glasgow, Glasgow, UK.

Department of Psychiatry, University of Oxford, Oxford, UK.

出版信息

Mol Psychiatry. 2020 Nov;25(11):3091-3099. doi: 10.1038/s41380-019-0439-8. Epub 2019 Jun 5.

Abstract

Genome-wide association studies (GWAS) of psychiatric phenotypes have tended to focus on categorical diagnoses, but to understand the biology of mental illness it may be more useful to study traits which cut across traditional boundaries. Here, we report the results of a GWAS of mood instability as a trait in a large population cohort (UK Biobank, n = 363,705). We also assess the clinical and biological relevance of the findings, including whether genetic associations show enrichment for nervous system pathways. Forty six unique loci associated with mood instability were identified with a SNP heritability estimate of 9%. Linkage Disequilibrium Score Regression (LDSR) analyses identified genetic correlations with Major Depressive Disorder (MDD), Bipolar Disorder (BD), Schizophrenia, anxiety, and Post Traumatic Stress Disorder (PTSD). Gene-level and gene set analyses identified 244 significant genes and 6 enriched gene sets. Tissue expression analysis of the SNP-level data found enrichment in multiple brain regions, and eQTL analyses highlighted an inversion on chromosome 17 plus two brain-specific eQTLs. In addition, we used a Phenotype Linkage Network (PLN) analysis and community analysis to assess for enrichment of nervous system gene sets using mouse orthologue databases. The PLN analysis found enrichment in nervous system PLNs for a community containing serotonin and melatonin receptors. In summary, this work has identified novel loci, tissues and gene sets contributing to mood instability. These findings may be relevant for the identification of novel trans-diagnostic drug targets and could help to inform future stratified medicine innovations in mental health.

摘要

精神疾病表型的全基因组关联研究(GWAS)往往侧重于分类诊断,但为了理解精神疾病的生物学机制,研究跨越传统界限的性状可能更有用。在此,我们报告了一项针对情绪不稳定这一性状的GWAS在一个大型人群队列(英国生物银行,n = 363,705)中的结果。我们还评估了这些发现的临床和生物学相关性,包括基因关联是否显示出神经系统通路的富集。我们鉴定出46个与情绪不稳定相关的独特位点,单核苷酸多态性(SNP)遗传度估计为9%。连锁不平衡评分回归(LDSR)分析确定了与重度抑郁症(MDD)、双相情感障碍(BD)、精神分裂症、焦虑症和创伤后应激障碍(PTSD)的遗传相关性。基因水平和基因集分析确定了244个显著基因和6个富集基因集。对SNP水平数据的组织表达分析发现多个脑区存在富集,表达数量性状位点(eQTL)分析突出了17号染色体上的一个倒位以及两个脑特异性eQTL。此外,我们使用表型连锁网络(PLN)分析和群落分析,利用小鼠直系同源数据库评估神经系统基因集的富集情况。PLN分析发现,在一个包含血清素和褪黑素受体的群落中,神经系统PLN存在富集。总之,这项工作确定了导致情绪不稳定的新位点、组织和基因集。这些发现可能与确定新的跨诊断药物靶点相关,并有助于为未来精神卫生领域的分层医学创新提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97ba/7116257/71d43b60ad37/EMS83213-f001.jpg

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