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结构变异是人类基因表达差异的主要来源,并且常常影响多个邻近基因。

Structural variants are a major source of gene expression differences in humans and often affect multiple nearby genes.

作者信息

Scott Alexandra J, Chiang Colby, Hall Ira M

机构信息

McDonnell Genome Institute, Washington University School of Medicine, St. Louis, Missouri 63108, USA.

Department of Medicine, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

Genome Res. 2021 Dec;31(12):2249-2257. doi: 10.1101/gr.275488.121. Epub 2021 Sep 20.

Abstract

Structural variants (SVs) are an important source of human genome diversity, but their functional effects are poorly understood. We mapped 61,668 SVs in 613 individuals from the GTEx project and measured their effects on gene expression. We estimate that common SVs are causal at 2.66% of eQTLs, a 10.5-fold enrichment relative to their abundance in the genome. Duplications and deletions were the most impactful variant types, whereas the contribution of mobile element insertions was small (0.12% of eQTLs, 1.9-fold enriched). Multitissue analysis of eQTLs revealed that gene-altering SVs show more constitutive effects than other variant types, with 62.09% of coding SV-eQTLs active in all tissues with eQTL activity compared with 23.08% of coding SNV- and indel-eQTLs. Noncoding SVs, SNVs and indels show broadly similar patterns. We also identified 539 rare SVs associated with nearby gene expression outliers. Of these, 62.34% are noncoding SVs that affect gene expression but have modest enrichment at regulatory elements, showing that rare noncoding SVs are a major source of gene expression differences but remain difficult to predict from current annotations. Both common and rare SVs often affect the expression of multiple genes: SV-eQTLs affect an average of 1.82 nearby genes, whereas SNV- and indel-eQTLs affect an average of 1.09 genes, and 21.34% of rare expression-altering SVs show effects on two to nine different genes. We also observe significant effects on rare gene expression changes extending 1 Mb from the SV. This provides a mechanism by which individual SVs may have strong or pleiotropic effects on phenotypic variation.

摘要

结构变异(SVs)是人类基因组多样性的重要来源,但其功能影响却知之甚少。我们在来自基因型组织表达(GTEx)项目的613名个体中绘制了61,668个SVs,并测量了它们对基因表达的影响。我们估计常见的SVs在2.66%的表达数量性状基因座(eQTLs)中具有因果关系,相对于它们在基因组中的丰度而言,富集了10.5倍。重复和缺失是最具影响力的变异类型,而移动元件插入的贡献较小(占eQTLs的0.12%,富集了1.9倍)。对eQTLs的多组织分析表明,与基因改变相关的SVs比其他变异类型表现出更多的组成性效应,在所有具有eQTL活性的组织中,62.09%的编码SV-eQTLs是活跃的,而编码单核苷酸变异(SNV)和插入缺失(indel)的eQTLs这一比例为23.08%。非编码SVs、SNVs和indels表现出大致相似的模式。我们还鉴定出539个与附近基因表达异常值相关的罕见SVs。其中,62.34%是非编码SVs,它们影响基因表达,但在调控元件处的富集程度适中,这表明罕见的非编码SVs是基因表达差异的主要来源,但从当前注释中仍难以预测。常见和罕见的SVs通常都会影响多个基因的表达:SV-eQTLs平均影响1.82个附近基因,而SNV-和indel-eQTLs平均影响1.09个基因,21.34%的罕见表达改变SVs对两到九个不同基因有影响。我们还观察到对罕见基因表达变化有显著影响,这种影响从SV延伸1兆碱基。这提供了一种机制,通过该机制单个SVs可能对表型变异产生强烈或多效性影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10b7/8647827/6c348e5a5d37/2249f01.jpg

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