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Context-dependent robustness to 5′ splice site polymorphisms in human populations

机译:人群中5'剪接位点多态性的上下文相关鲁棒性

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There has been growing evidence for extensive diversity of alternative splicing in human populations. Genetic variants within the 5′ splice site can cause splicing differences among human individuals and constitute an important class of human disease mutations. In this study, we explored whether natural variations of splicing could reveal important signals of 5′ splice site recognition. In seven lymphoblastoid cell lines of Asian, European and African ancestry, we identified 1174 single nucleotide polymorphisms (SNPs) within the consensus 5′ splice site. We selected 129 SNPs predicted to significantly alter the splice site activity, and quantitatively examined their splicing impact in the seven individuals. Surprisingly, outside of the essential GT dinucleotide position, only ∼14% of the tested SNPs altered splicing. Bioinformatic and minigene analyses identified signals that could modify the impact of 5′ splice site polymorphisms, most notably a strong 3′ splice site and the presence of intronic motifs downstream of the 5′ splice site. Strikingly, we found that the poly-G run, a known intronic splicing enhancer, was the most significantly enriched motif downstream of exons unaffected by 5′ splice site SNPs. In TRIM62, the upstream 3′ splice site and downstream intronic poly-G runs functioned redundantly to protect an exon from its 5′ splice site polymorphism. Collectively, our study reveals widespread context-dependent robustness to 5′ splice site polymorphisms in human transcriptomes. Consequently, certain exons are more susceptible to 5′ splice site mutations. Additionally, our work demonstrates that genetic diversity of alternative splicing can provide significant insights into the splicing code of mammalian cells.
机译:越来越多的证据表明,人类中替代剪接的广泛多样性。 5'剪接位点内的遗传变异可引起人类个体之间的剪接差异,并构成人类疾病突变的重要类别。在这项研究中,我们探讨了剪接的自然变异是否可以揭示5'剪接位点识别的重要信号。在亚洲,欧洲和非洲血统的七个淋巴母细胞细胞系中,我们在共有5'剪接位点内鉴定出1174个单核苷酸多态性(SNP)。我们选择了129个预计会显着改变剪接位点活性的SNP,并定量检查了其对7个人的剪接影响。令人惊讶地,在必需的GT二核苷酸位置之外,仅约14%的被测SNP改变了剪接。生物信息学和微型基因分析确定了可以修饰5'剪接位点多态性影响的信号,最明显的是一个强3'剪接位点和5'剪接位点下游的内含子基序。令人惊讶地,我们发现,已知的内含子剪接增强子poly-G run是不受5'剪接位点SNP影响的外显子下游最显着富集的基序。在TRIM62中,上游3'剪接位点和下游内含子poly-G运行多余地起作用,以保护外显子免受其5'剪接位点多态性的影响。总的来说,我们的研究揭示了人类转录组中5'剪接位点多态性的广泛上下文相关鲁棒性。因此,某些外显子更容易受到5'剪接位点突变的影响。此外,我们的工作表明,选择性剪接的遗传多样性可以为哺乳动物细胞的剪接编码提供重要的见识。

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    《Human Molecular Genetics 》 |2011年第6期| p.1084-1096| 共13页
  • 作者单位

    Department of Internal Medicine and;

    Department of Internal Medicine and;

    Department of Veterinary Integrative Biosciences, Texas A&M University, College Station, TX 77843, USA;

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