首页> 外文期刊>Translational psychiatry. >Expression quantitative trait loci-derived scores and white matter microstructure in UK Biobank: a novel approach to integrating genetics and neuroimaging
【24h】

Expression quantitative trait loci-derived scores and white matter microstructure in UK Biobank: a novel approach to integrating genetics and neuroimaging

机译:英国Biobank中的表达定量性状衍生评分和白质微观结构:一种结合遗传和神经影像的新方法

获取原文
           

摘要

Expression quantitative trait loci (eQTL) are genetic variants associated with gene expression. Using genome-wide genotype data, it is now possible to impute gene expression using eQTL mapping efforts. This approach can be used to analyse previously unexplored relationships between gene expression and heritable in vivo measures of human brain structural connectivity. Using large-scale eQTL mapping studies, we computed 6457 gene expression scores (eQTL scores) using genome-wide genotype data in UK Biobank, where each score represents a genetic proxy measure of gene expression. These scores were then tested for associations with two diffusion tensor imaging measures, fractional anisotropy (NsubFA/sub?=?14,518) and mean diffusivity (NsubMD/sub?=?14,485), representing white matter structural integrity. We found FDR-corrected significant associations between 8 eQTL scores and structural connectivity phenotypes, including global and regional measures (βsubabsolute/sub FA?=?0.0339-0.0453; MD?=?0.0308-0.0381) and individual tracts (βsubabsolute/sub FA?=?0.0320-0.0561; MD?=?0.0295-0.0480). The loci within these eQTL scores have been reported to regulate expression of genes involved in various brain-related processes and disorders, such as neurite outgrowth and Parkinson's disease (DCAKD, SLC35A4, SEC14L4, SRA1, NMT1, CPNE1, PLEKHM1, UBE3C). Our findings indicate that eQTL scores are associated with measures of in vivo brain connectivity and provide novel information not previously found by conventional genome-wide association studies. Although the role of expression of these genes regarding white matter microstructural integrity is not yet clear, these results suggest it may be possible, in future, to map potential trait- and disease-associated eQTL to in vivo brain connectivity and better understand the mechanisms of psychiatric disorders and brain traits, and their associated imaging findings.
机译:表达定量性状基因座(EQT1)是与基因表达相关的遗传变体。使用基因组基因型数据,现在可以使用EQTL映射工作来施加基因表达。这种方法可用于分析基因表达与人类脑结构连通性体内基因表达和遗传性之间的预先开发的关系。使用大规模的EQTL映射研究,我们使用英国Biobank的基因组基因型数据计算了6457个基因表达分数(EQTL分数),其中每个得分代表基因表达的遗传代理测量。然后测试这些分数的两个扩散张量成像措施的关联,分数各向异性(n fa ?=?14,518)和平均扩散性(n md ?=?14,485),代表白质结构完整性。我们发现FDR纠正了8个EQTL评分和结构连接表型之间的重要关联,包括全球和区域措施(β绝对 fa?=?0.0339-0.0453; MD?=?0.0308-0.0381)和个体尸体(β绝对 fa?= 0.0320-0.0561; MD?=?0.0295-0.0480)。据报道,这些EQTL评分内的基因座来调节涉及各种脑相关过程和疾病的基因的表达,例如神经沸石产物和帕金森病(DCAKD,SLC35A4,SEC14L4,SRA1,NMT1,CPNE1,PLEKHM1,UBE3C)。我们的研究结果表明,EQTL评分与体内脑连接的措施相关,并提供以前未发现常规基因组关联研究未发现的新信息。虽然这些基因的表达关于白质微结构完整性的作用尚不清楚,但这些结果表明,将来可能是可能的,以将潜在的性质和疾病相关的EQTL映射到体内脑连接和更好地理解的机制精神病疾病和大脑特征及其相关的成像结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号