Department of Genetics, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
Wellcome Sanger Institute, Hinxton, UK.
Nat Genet. 2023 Mar;55(3):377-388. doi: 10.1038/s41588-023-01300-6. Epub 2023 Feb 23.
Identification of therapeutic targets from genome-wide association studies (GWAS) requires insights into downstream functional consequences. We harmonized 8,613 RNA-sequencing samples from 14 brain datasets to create the MetaBrain resource and performed cis- and trans-expression quantitative trait locus (eQTL) meta-analyses in multiple brain region- and ancestry-specific datasets (n ≤ 2,759). Many of the 16,169 cortex cis-eQTLs were tissue-dependent when compared with blood cis-eQTLs. We inferred brain cell types for 3,549 cis-eQTLs by interaction analysis. We prioritized 186 cis-eQTLs for 31 brain-related traits using Mendelian randomization and co-localization including 40 cis-eQTLs with an inferred cell type, such as a neuron-specific cis-eQTL (CYP24A1) for multiple sclerosis. We further describe 737 trans-eQTLs for 526 unique variants and 108 unique genes. We used brain-specific gene-co-regulation networks to link GWAS loci and prioritize additional genes for five central nervous system diseases. This study represents a valuable resource for post-GWAS research on central nervous system diseases.
从全基因组关联研究 (GWAS) 中鉴定治疗靶点需要深入了解下游的功能后果。我们协调了来自 14 个大脑数据集的 8613 个 RNA 测序样本,创建了 MetaBrain 资源,并在多个大脑区域和祖源特定的数据集(n ≤ 2759)中进行了顺式和反式表达数量性状基因座 (eQTL) 荟萃分析。与血液顺式 eQTL 相比,许多 16169 个皮质顺式 eQTL 具有组织依赖性。我们通过交互分析推断了 3549 个顺式 eQTL 的大脑细胞类型。我们使用孟德尔随机化和共定位,对 31 个与大脑相关的特征对 186 个顺式 eQTL 进行了优先级排序,其中包括 40 个具有推断细胞类型的顺式 eQTL,例如多发性硬化症的神经元特异性顺式 eQTL (CYP24A1)。我们进一步描述了 526 个独特变体和 108 个独特基因的 737 个反式 eQTL。我们使用大脑特异性基因共调控网络将 GWAS 基因座与五个中枢神经系统疾病联系起来,并为其优先排序其他基因。这项研究代表了针对中枢神经系统疾病的 GWAS 后研究的宝贵资源。