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首页> 外文期刊>Molecular biology of the cell >Transcription factor regulation and chromosome dynamics during pseudohyphal growth
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Transcription factor regulation and chromosome dynamics during pseudohyphal growth

机译:假菌丝生长过程中的转录因子调控和染色体动力学

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摘要

Pseudohyphal growth is a developmental pathway seen in some strains of yeast in which cells form multicellular filaments in response to environmental stresses. We used multiplexed transposon "Calling Cards" to record the genome-wide binding patterns of 28 transcription factors (TFs) in nitrogen-starved yeast. We identified TF targets relevant for pseudohyphal growth, producing a detailed map of its regulatory network. Using tools from graph theory, we identified 14 TFs that lie at the center of this network, including Flo8, Mss11, and Mfg1, which bind as a complex. Surprisingly, the DNA-binding preferences for these key TFs were unknown. Using Calling Card data, we predicted the in vivo DNA-binding motif for the Flo8-Mss11-Mfg1 complex and validated it using a reporter assay. We found that this complex binds several important targets, including FLO11, at both their promoter and termination sequences. We demonstrated that this binding pattern is the result of DNA looping, which regulates the transcription of these targets and is stabilized by an interaction with the nuclear pore complex. This looping provides yeast cells with a transcriptional memory, enabling them more rapidly to execute the filamentous growth program when nitrogen starved if they had been previously exposed to this condition.
机译:假菌丝的生长是在某些酵母菌株中发现的发育途径,其中细胞响应环境压力而形成多细胞细丝。我们使用多重转座子“电话卡”来记录氮饥饿酵母中28个转录因子(TF)的全基因组结合模式。我们确定了与假菌丝生长相关的TF靶标,产生了其调控网络的详细图谱。使用图论工具,我们确定了位于该网络中心的14个TF,包括Flo8,Mss11和Mfg1,它们绑定为一个复合体。出人意料的是,这些关键TF的DNA结合偏好是未知的。使用电话卡数据,我们预测了Flo8-Mss11-Mfg1复合体的体内DNA结合基序,并使用报告基因分析对其进行了验证。我们发现该复合物在其启动子和终止序列上都结合了几个重要的靶标,包括FLO11。我们证明了这种结合模式是DNA环化的结果,DNA环化调节了这些靶标的转录并通过与核孔复合物的相互作用而得以稳定。这种循环为酵母细胞提供了转录记忆,如果它们先前曾暴露于这种条件下,则在氮饥饿时,它们可以更快地执行丝状生长程序。

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