生物
表达数量性状基因座
进行性核上麻痹
选择性拼接
遗传学
RNA剪接
基因
结构变异
基因座(遗传学)
组蛋白
数量性状位点
表型
基因组
计算生物学
单核苷酸多态性
外显子
核糖核酸
基因型
萎缩
作者
Ricardo A. Vialle,Kátia de Paiva Lopes,David A. Bennett,John F. Crary,Towfique Raj
标识
DOI:10.1038/s41593-022-01031-7
摘要
Structural variants (SVs), which are genomic rearrangements of more than 50 base pairs, are an important source of genetic diversity and have been linked to many diseases. However, it remains unclear how they modulate human brain function and disease risk. Here we report 170,996 SVs discovered using 1,760 short-read whole genomes from aged adults and individuals with Alzheimer's disease. By applying quantitative trait locus (SV-xQTL) analyses, we quantified the impact of cis-acting SVs on histone modifications, gene expression, splicing and protein abundance in postmortem brain tissues. More than 3,200 SVs were associated with at least one molecular phenotype. We found reproducibility of 65-99% SV-eQTLs across cohorts and brain regions. SV associations with mRNA and proteins shared the same direction of effect in more than 87% of SV-gene pairs. Mediation analysis showed ~8% of SV-eQTLs mediated by histone acetylation and ~11% by splicing. Additionally, associations of SVs with progressive supranuclear palsy identified previously known and novel SVs.
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