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Large-scale mapping of gene regulatory logic reveals context-dependent repression by transcriptional activators

机译:基因调控逻辑的大规模绘图揭示了转录激活因子的依赖于上下文的抑制

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摘要

Transcription factors (TFs) are key mediators that propagate extracellular and intracellular signals through to changes in gene expression profiles. However, the rules by which promoters decode the amount of active TF into target gene expression are not well understood. To determine the mapping between promoter DNA sequence, TF concentration, and gene expression output, we have conducted in budding yeast a large-scale measurement of the activity of thousands of designed promoters at six different levels of TF. We observe that maximum promoter activity is determined by TF concentration and not by the number of binding sites. Surprisingly, the addition of an activator site often reduces expression. A thermodynamic model that incorporates competition between neighboring binding sites for a local pool of TF molecules explains this behavior and accurately predicts both absolute expression and the amount by which addition of a site increases or reduces expression. Taken together, our findings support a model in which neighboring binding sites interact competitively when TF is limiting but otherwise act additively.
机译:转录因子(TFs)是关键的介质,通过细胞外和细胞内的信号传播,从而改变基因表达谱。然而,启动子将活性TF的量解码为靶基因表达的规则尚不十分清楚。为了确定启动子DNA序列,TF浓度和基因表达输出之间的映射关系,我们在发芽酵母中对六种不同TF水平的数千个设计启动子的活性进行了大规模测量。我们观察到最大启动子活性是由TF浓度决定的,而不是由结合位点的数目决定的。出人意料的是,添加激活位点通常会降低表达。结合了相邻结合位点之间对TF分子局部池的竞争的热力学模型解释了此行为,并准确预测了绝对表达和位点添加增加或减少表达的量。综上所述,我们的发现支持了一种模型,其中当TF受到限制时,相邻的结合位点竞争性相互作用,但除此之外又起累加作用。

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