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源自miR-137的多基因风险:对精神分裂症患者及对照者认知表现的影响。

MiR-137-derived polygenic risk: effects on cognitive performance in patients with schizophrenia and controls.

作者信息

Cosgrove D, Harold D, Mothersill O, Anney R, Hill M J, Bray N J, Blokland G, Petryshen T, Richards A, Mantripragada K, Owen M, O'Donovan M C, Gill M, Corvin A, Morris D W, Donohoe G

机构信息

The Cognitive Genetics & Cognitive Therapy Group, The School of Psychology and Discipline of Biochemistry, The Centre for Neuroimaging & Cognitive Genomics, National University of Ireland, Galway, Ireland.

Neuropsychiatric Genetics Research Group, Department of Psychiatry, Institute of Molecular Medicine, Trinity College Dublin, Dublin, Ireland.

出版信息

Transl Psychiatry. 2017 Jan 24;7(1):e1012. doi: 10.1038/tp.2016.286.

Abstract

Variants at microRNA-137 (MIR137), one of the most strongly associated schizophrenia risk loci identified to date, have been associated with poorer cognitive performance. As microRNA-137 is known to regulate the expression of ~1900 other genes, including several that are independently associated with schizophrenia, we tested whether this gene set was also associated with variation in cognitive performance. Our analysis was based on an empirically derived list of genes whose expression was altered by manipulation of MIR137 expression. This list was cross-referenced with genome-wide schizophrenia association data to construct individual polygenic scores. We then tested, in a sample of 808 patients and 192 controls, whether these risk scores were associated with altered performance on cognitive functions known to be affected in schizophrenia. A subgroup of healthy participants also underwent functional imaging during memory (n=108) and face processing tasks (n=83). Increased polygenic risk within the empirically derived miR-137 regulated gene score was associated with significantly lower performance on intelligence quotient, working memory and episodic memory. These effects were observed most clearly at a polygenic threshold of P=0.05, although significant results were observed at all three thresholds analyzed. This association was found independently for the gene set as a whole, excluding the schizophrenia-associated MIR137 SNP itself. Analysis of the spatial working memory fMRI task further suggested that increased risk score (thresholded at P=10) was significantly associated with increased activation of the right inferior occipital gyrus. In conclusion, these data are consistent with emerging evidence that MIR137 associated risk for schizophrenia may relate to its broader downstream genetic effects.

摘要

微小RNA - 137(MIR137)基因变异是迄今为止确定的与精神分裂症风险关联最为紧密的位点之一,与较差的认知表现有关。由于已知微小RNA - 137可调控约1900个其他基因的表达,其中包括几个与精神分裂症独立相关的基因,我们测试了这个基因集是否也与认知表现的变异有关。我们的分析基于一份通过实验得出的基因列表,这些基因的表达会因MIR137表达的改变而变化。该列表与全基因组精神分裂症关联数据进行交叉比对,以构建个体多基因分数。然后,我们在一个包含808名患者和192名对照的样本中进行测试,检验这些风险分数是否与精神分裂症中已知受影响的认知功能表现改变有关。一组健康参与者还在进行记忆任务(n = 108)和面部处理任务(n = 83)时接受了功能成像检查。经验证得出的miR - 137调控基因分数内的多基因风险增加与智商、工作记忆和情景记忆的显著较低表现相关。尽管在分析的所有三个阈值下均观察到显著结果,但这些效应在多基因阈值P = 0.05时最为明显。整个基因集独立发现了这种关联,不包括与精神分裂症相关的MIR137单核苷酸多态性本身。对空间工作记忆功能磁共振成像任务的分析进一步表明,风险分数增加(阈值设定为P = 10)与右侧枕下回激活增加显著相关。总之,这些数据与新出现的证据一致,即MIR137相关的精神分裂症风险可能与其更广泛的下游基因效应有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b57/5545742/8b3e7431fca8/tp2016286f1.jpg

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