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Functional effects of variation in transcription factor binding highlight long-range gene regulation by epromoters

机译:转录因子变异变异结合突出的ePROMoters的远程基因调控的功能效应

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摘要

Identifying DNA cis-regulatory modules (CRMs) that control the expression of specific genes is crucial for deciphering the logic of transcriptional control. Natural genetic variation can point to the possible gene regulatory function of specific sequences through their allelic associations with gene expression. However, comprehensive identification of causal regulatory sequences in brute-force association testing without incorporating prior knowledge is challenging due to limited statistical power and effects of linkage disequilibrium. Sequence variants affecting transcription factor (TF) binding at CRMs have a strong potential to influence gene regulatory function, which provides a motivation for prioritizing such variants in association testing. Here, we generate an atlas of CRMs showing predicted allelic variation in TF binding affinity in human lymphoblastoid cell lines and test their association with the expression of their putative target genes inferred from Promoter Capture Hi-C and immediate linear proximity. We reveal >1300 CRM TF-binding variants associated with target gene expression, the majority of them undetected with standard association testing. A large proportion of CRMs showing associations with the expression of genes they contact in 3D localize to the promoter regions of other genes, supporting the notion of 'epromoters': dual-action CRMs with promoter and distal enhancer activity.
机译:鉴定控制特定基因表达的DNA顺式调节模块(CRMS)对于破译转录控制逻辑至关重要。天然遗传变异可以通过与基因表达的等位基因关联来指向特定序列的可能基因调节功能。然而,由于有限的统计功率和联动不平衡的影响,综合识别严重关联测试而不纳入事先知识的挑战性是挑战。影响在CRMS的转录因子(TF)结合的序列变体具有强烈的潜力来影响基因调节功能,这提供了优先考虑结合测试中这种变体的动机。这里,我们产生具有在人淋巴细胞细胞系中的TF结合亲和力的预测等位基因的地图,并与从启动子捕获HI-C和即时线性接近的引发靶基因的表达测试它们的关联。我们揭示了与靶基因表达相关的1300 CRM TF结合变体,其中大多数由标准关联测试未被发现。大部分Crms显示与它们在3D中接触的基因的表达的缔合物,该基因定位于其他基因的启动子区域,支持具有启动子和远端增强剂活性的“EPROMoters”的概念。

著录项

  • 来源
    《Nucleic Acids Research》 |2020年第6期|共14页
  • 作者单位

    Babraham Inst Nucl Dynam Programme Babraham Res Campus Cambridge CB22 3AT England;

    Univ Cambridge CITIID Cambridge Biomed Campus Cambridge CB2 0AW England;

    Univ Cambridge CITIID Cambridge Biomed Campus Cambridge CB2 0AW England;

    Babraham Inst Nucl Dynam Programme Babraham Res Campus Cambridge CB22 3AT England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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