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皮下脂肪组织剪接数量性状基因座揭示了与心脏代谢特征相关的异构体使用差异。

Subcutaneous adipose tissue splice quantitative trait loci reveal differences in isoform usage associated with cardiometabolic traits.

机构信息

Department of Genetics, University of North Carolina, Chapel Hill, NC 27599, USA.

Department of Genetics, University of North Carolina, Chapel Hill, NC 27599, USA; Department of Biology, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

Am J Hum Genet. 2022 Jan 6;109(1):66-80. doi: 10.1016/j.ajhg.2021.11.019.

Abstract

Alternate splicing events can create isoforms that alter gene function, and genetic variants associated with alternate gene isoforms may reveal molecular mechanisms of disease. We used subcutaneous adipose tissue of 426 Finnish men from the METSIM study and identified splice junction quantitative trait loci (sQTLs) for 6,077 splice junctions (FDR < 1%). In the same individuals, we detected expression QTLs (eQTLs) for 59,443 exons and 15,397 genes (FDR < 1%). We identified 595 genes with an sQTL and exon eQTL but no gene eQTL, which could indicate potential isoform differences. Of the significant sQTL signals, 2,114 (39.8%) included at least one proxy variant (linkage disequilibrium r > 0.8) located within an intron spanned by the splice junction. We identified 203 sQTLs that colocalized with 141 genome-wide association study (GWAS) signals for cardiometabolic traits, including 25 signals for lipid traits, 24 signals for body mass index (BMI), and 12 signals for waist-hip ratio adjusted for BMI. Among all 141 GWAS signals colocalized with an sQTL, we detected 26 that also colocalized with an exon eQTL for an exon skipped by the sQTL splice junction. At a GWAS signal for high-density lipoprotein cholesterol colocalized with an NR1H3 sQTL splice junction, we show that the alternative splice product encodes an NR1H3 transcription factor that lacks a DNA binding domain and fails to activate transcription. Together, these results detect splicing events and candidate mechanisms that may contribute to gene function at GWAS loci.

摘要

可变剪接事件可产生改变基因功能的异构体,与可变基因异构体相关的遗传变异可能揭示疾病的分子机制。我们使用来自 METSIM 研究的 426 名芬兰男性的皮下脂肪组织,鉴定了 6077 个剪接位点的剪接连接数量性状基因座(sQTL;FDR<1%)。在相同个体中,我们检测到 59443 个外显子和 15397 个基因的表达数量性状基因座(eQTL;FDR<1%)。我们鉴定了 595 个具有 sQTL 和外显子 eQTL 但没有基因 eQTL 的基因,这可能表明潜在的异构体差异。在显著的 sQTL 信号中,2114 个(39.8%)至少包含一个位于剪接连接所跨越内含子内的代理变体(连锁不平衡 r>0.8)。我们鉴定了 203 个与 141 个心血管代谢特征全基因组关联研究(GWAS)信号共定位的 sQTL,包括 25 个与脂质特征相关的信号、24 个与体重指数(BMI)相关的信号和 12 个与 BMI 调整的腰围-臀围比相关的信号。在与 sQTL 共定位的所有 141 个 GWAS 信号中,我们检测到 26 个也与 sQTL 剪接连接跳过的外显子的外显子 eQTL 共定位。在与 NR1H3 sQTL 剪接连接共定位的高密度脂蛋白胆固醇 GWAS 信号中,我们表明,替代剪接产物编码一种缺乏 DNA 结合域且无法激活转录的 NR1H3 转录因子。总之,这些结果检测到可能导致 GWAS 位点基因功能的剪接事件和候选机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54da/8764203/4f2e8e45110e/fx1.jpg

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