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RNA 剪接的遗传控制及其在复杂性状变异中的独特作用。

Genetic control of RNA splicing and its distinct role in complex trait variation.

机构信息

School of Life Sciences, Westlake University, Hangzhou, China.

Westlake Laboratory of Life Sciences and Biomedicine, Hangzhou, China.

出版信息

Nat Genet. 2022 Sep;54(9):1355-1363. doi: 10.1038/s41588-022-01154-4. Epub 2022 Aug 18.

Abstract

Most genetic variants identified from genome-wide association studies (GWAS) in humans are noncoding, indicating their role in gene regulation. Previous studies have shown considerable links of GWAS signals to expression quantitative trait loci (eQTLs) but the links to other genetic regulatory mechanisms, such as splicing QTLs (sQTLs), are underexplored. Here, we introduce an sQTL mapping method, testing for heterogeneity between isoform-eQTL effects (THISTLE), with improved power over competing methods. Applying THISTLE together with a complementary sQTL mapping strategy to brain transcriptomic (n = 2,865) and genotype data, we identified 12,794 genes with cis-sQTLs at P < 5 × 10, approximately 61% of which were distinct from eQTLs. Integrating the sQTL data into GWAS for 12 brain-related complex traits (including diseases), we identified 244 genes associated with the traits through cis-sQTLs, approximately 61% of which could not be discovered using the corresponding eQTL data. Our study demonstrates the distinct role of most sQTLs in the genetic regulation of transcription and complex trait variation.

摘要

大多数从全基因组关联研究(GWAS)中鉴定的遗传变异是非编码的,表明它们在基因调控中的作用。先前的研究表明,GWAS 信号与表达数量性状基因座(eQTLs)之间存在相当大的关联,但与其他遗传调控机制(如剪接 QTLs(sQTLs))之间的关联则研究不足。在这里,我们引入了一种 sQTL 映射方法,即检测异构体-eQTL 效应之间的异质性(THISTLE),与竞争方法相比,该方法具有更高的功效。我们应用 THISTLE 以及一种互补的 sQTL 映射策略,对脑转录组(n=2865)和基因型数据进行了分析,鉴定出了 12794 个 cis-sQTL 基因,P 值<5×10,其中约 61%与 eQTL 不同。将 sQTL 数据整合到 12 个与大脑相关的复杂性状(包括疾病)的 GWAS 中,我们通过 cis-sQTL 鉴定出了 244 个与这些性状相关的基因,其中约 61%的基因不能通过相应的 eQTL 数据发现。我们的研究表明,大多数 sQTL 在转录和复杂性状变异的遗传调控中具有独特的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad2f/9470536/42808b00c4dd/41588_2022_1154_Fig1_HTML.jpg

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