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How subtle changes in 3D structure can create large changes in transcription

机译:3D结构的微妙变化可以产生大的转录变化

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摘要

Animal genomes are organized into topologically associated domains (TADs). TADs are thought to contribute to gene regulation by facilitating enhancer-promoter (E-P) contacts within a TAD and preventing these contacts across TAD borders. However, the absolute difference in contact frequency across TAD boundaries is usually less than 2-fold, even though disruptions of TAD borders can change gene expression by 10-fold. Existing models fail to explain this hypersensitive response. Here, we propose a futile cycle model of enhancer-mediated regulation that can exhibit hypersensitivity through bistability and hysteresis. Consistent with recent experiments, this regulation does not exhibit strong correlation between E-P contact and promoter activity, even though regulation occurs through contact. Through mathematical analysis and stochastic simulation, we show that this system can create an illusion of E-P biochemical specificity and explain the importance of weak TAD boundaries. It also offers a mechanism to reconcile apparently contradictory results from recent global TAD disruption with local TAD boundary deletion experiments. Together, these analyses advance our understanding of cis-regulatory contacts in controlling gene expression and suggest new experimental directions.
机译:动物基因组被组织成拓扑相关的结构域(TADS)。 TADS通过促进TAD内的增强剂 - 启动子(E-P)接触并防止跨TAD边界的这些接触有助于基因调节。然而,跨TAD边界的接触频率的绝对差异通常小于2倍,即使TAD边界的破坏可以将基因表达改变10倍。现有模型未能解释这种过敏反应。在这里,我们提出了一种徒劳的循环模型的增强剂介导的调节,可以通过双稳态和滞后表现出超敏反应。即使通过接触发生调节,该调节在近期实验中,该调节在E-P接触和启动子活性之间并未表现出强烈的相关性。通过数学分析和随机仿真,我们表明该系统可以造成E-P生物化学特异性的幻觉,并解释了弱TAD边界的重要性。它还提供了一种在最近的全球TAD中断与本地TAD边界缺失实验中明显矛盾的结果的机制。这些分析了我们对控制基因表达的思科调节接触的理解,提出了新的实验方向。

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