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Genetic determinants of co-accessible chromatin regions in activated T cells across humans

机译:跨人类活化T细胞中共可及染色质区域的遗传决定因素

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摘要

Over 90% of genetic variants associated with complex human traits map to non-coding regions, but little is understood about how they modulate gene regulation in health and disease. One possible mechanism is that genetic variants affect the activity of one or more cis-regulatory elements leading to gene expression variation in specific cell types. To identify such cases, we analyzed ATAC-seq and RNA-seq profiles from stimulated primary CD4+ T cells in up to 105 healthy donors. We found regions of accessible chromatin (ATAC-peaks) are co-accessible at kilobase and megabase resolution, consistent with the 3D chromatin organization measured by in situ Hi-C in T cells. 15% of genetic variants located within ATAC-peaks affected the accessibility of the corresponding peak (ATAC-QTLs). ATAC-QTLs have the largest effects on co-accessible peaks, are associated with gene expression, and are enriched for autoimmune disease variants. Our results provide insights into how natural genetic variants modulate cis-regulatory elements, in isolation or in concert, to influence gene expression.
机译:超过90%的与复杂人类特征相关的遗传变异都映射到非编码区,但对于它们如何调节健康和疾病中的基因调控知之甚少。一种可能的机制是遗传变异影响一种或多种顺式调控元件的活性,从而导致特定细胞类型中基因表达的变异。为了确定这种情况,我们分析了多达105位健康供体中受刺激的CD4 + T细胞的ATAC-seq和RNA-seq图谱。我们发现可访问的染色质(ATAC峰)区域可以在千碱基和兆碱基的分辨率下共同访问,这与通过T细胞中原位Hi-C测量的3D染色质组织一致。位于ATAC峰内的15%的遗传变异影响了相应峰(ATAC-QTL)的可及性。 ATAC-QTL对可同时到达的峰具有最大的影响,与基因表达相关,并且富含自身免疫性疾病变体。我们的结果提供了关于天然遗传变异体如何独立或共同调节顺式调控元件以影响基因表达的见解。

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