Combinatorial effects of multiple enhancer variants in linkage disequilibrium dictate levels of gene expression to confer susceptibility to common traits.

Combinatorial effects of multiple enhancer variants in linkage disequilibrium dictate levels of gene expression to confer susceptibility to common traits.
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DOI:
10.1101/gr.164079.113
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发表时间:
2014-01
期刊:
影响因子:
7
通讯作者:
Scacheri PC
Scacheri PC
中科院分区:
生物学1区
文献类型:
--
作者:
Corradin O;Saiakhova A;Akhtar-Zaidi B;Myeroff L;Willis J;Cowper-Sal lari R;Lupien M;Markowitz S;Scacheri PC

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倾向于共同性状的DNA变异(snp)通常定位于非编码调控元件,如增强子。此外,通过全基因组关联研究(GWAS)鉴定的位点通常包含多个连锁不平衡(LD)的snp,其中任何一个都可能是因果关系。因此,确定这些多变体snp对目标转录物水平的影响一直是一个主要挑战。在这里,我们提供的证据表明,对于六种常见的自身免疫性疾病(类风湿性关节炎、克罗恩病、乳糜泻、多发性硬化症、狼疮和溃疡性结肠炎),GWAS关联源于LD的多种多态性,这些多态性与同一细胞类型中活跃的增强子元素簇相关。这一发现提出了共同性状的“多增强子变异”假说,即LD的几个变异影响多个增强子并协同影响基因表达。使用一种新的方法来描述增强子-基因相互作用,我们表明,在一个给定的位点内,多个增强子变异通常针对相同的基因。利用来自HapMap和B淋巴细胞的可用数据作为模型系统,我们在许多位点上提供了证据,证明多个增强子变异协同促进其基因靶标表达的改变。对目标转录物水平的影响往往是适度的,可能是功能增加或功能丧失。此外,与多个增强子变异相关的基因编码的蛋白质通常在功能上相关,并在共同途径中富集。总的来说,多增强子变异假说提供了一种新的范式,通过这种范式,非编码变异可以赋予共同性状的易感性。
DNA variants (SNPs) that predispose to common traits often localize within noncoding regulatory elements such as enhancers. Moreover, loci identified by genome-wide association studies (GWAS) often contain multiple SNPs in linkage disequilibrium (LD), any of which may be causal. Thus, determining the effect of these multiple variant SNPs on target transcript levels has been a major challenge. Here, we provide evidence that for six common autoimmune disorders (rheumatoid arthritis, Crohn's disease, celiac disease, multiple sclerosis, lupus, and ulcerative colitis), the GWAS association arises from multiple polymorphisms in LD that map to clusters of enhancer elements active in the same cell type. This finding suggests a “multiple enhancer variant” hypothesis for common traits, where several variants in LD impact multiple enhancers and cooperatively affect gene expression. Using a novel method to delineate enhancer–gene interactions, we show that multiple enhancer variants within a given locus typically target the same gene. Using available data from HapMap and B lymphoblasts as a model system, we provide evidence at numerous loci that multiple enhancer variants cooperatively contribute to altered expression of their gene targets. The effects on target transcript levels tend to be modest and can be either gain- or loss-of-function. Additionally, the genes associated with multiple enhancer variants encode proteins that are often functionally related and enriched in common pathways. Overall, the multiple enhancer variant hypothesis offers a new paradigm by which noncoding variants can confer susceptibility to common traits.
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