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'Hit-and-Run' leaves its mark: Catalyst transcription factors and chromatin modification

机译:“即跑即走”留下了自己的印记:催化剂转录因子和染色质修饰

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Understanding how transcription factor (TF) binding is related to gene regulation is a moving target. We recently uncovered genome-wide evidence for a Hit-and-Run model of transcription. In this model, a master TF hits a target promoter to initiate a rapid response to a signal. As the hit is transient, the model invokes recruitment of partner TFs to sustain transcription over time. Following the run, the master TF hits other targets to propagate the response genome-wide. As such, a TF may act as a catalyst to mount a broad and acute response in cells that first sense the signal, while the recruited TF partners promote long-term adaptive behavior in the whole organism. This Hit-and-Run model likely has broad relevance, as TF perturbation studies across eukaryotes show small overlaps between TF-regulated and TF-bound genes, implicating transient TF-target binding. Here, we explore this Hit-and-Run model to suggest molecular mechanisms and its biological relevance.
机译:了解转录因子(TF)的结合与基因调控之间的关系是一个移动的目标。我们最近发现了全基因组转录和转录运行模型的证据。在此模型中,主TF命中目标启动子以启动对信号的快速响应。由于命中是短暂的,因此该模型会调用伙伴TF的募集,以随着时间的推移维持转录。运行后,主TF击中其他靶标以在全基因组范围内传播反应。这样,TF可以充当催化剂,在首先感知信号的细胞中引发广泛而急性的反应,而募集的TF伴侣则可以促进整个生物体的长期适应性行为。这种“运行即运行”模型可能具有广泛的相关性,因为对真核生物的TF扰动研究显示,TF调控的基因和TF结合的基因之间存在小的重叠,这暗示了TF靶标的短暂结合。在这里,我们探索了这种“运行即运行”模型,以提出分子机制及其生物学相关性。

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