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Molecular basis of FIR-mediated c-myc transcriptional control

机译:FIR介导的c-myc转录调控的分子基础

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The far upstream element (FUSE) regulatory system promotes a peak in the concentration of c-Myc during cell cycle. First, the FBP transcriptional activator binds to the FUSE DNA element upstream of the c-myc promoter. Then, FBP recruits its specific repressor (FIR), which acts as an on/off transcriptional switch. Here we describe the molecular basis of FIR recruitment, showing that the tandem RNA recognition motifs of FIR provide a platform for independent FUSE DNA and FBP protein binding and explaining the structural basis of the reversibility of the FBP-FIR interaction. We also show that the physical coupling between FBP and FIR is modulated by a flexible linker positioned sequentially to the recruiting element. Our data explain how the FUSE system precisely regulates c-myc transcription and suggest that a small change in FBP-FIR affinity leads to a substantial effect on c-Myc concentration.
机译:远上游元件(FUSE)调节系统在细胞周期内促进c-Myc浓度的峰值。首先,FBP转录激活因子与c-myc启动子上游的FUSE DNA元件结合。然后,FBP募集其特异阻遏物(FIR),用作开/关转录开关。在这里,我们描述了FIR募集的分子基础,表明FIR的串联RNA识别基序为独立的FUSE DNA和FBP蛋白结合提供了一个平台,并解释了FBP-FIR相互作用可逆性的结构基础。我们还表明,FBP和FIR之间的物理耦合是通过顺序定位到募集元素的灵活链接器进行调节的。我们的数据解释了FUSE系统如何精确调节c-myc转录,并暗示FBP-FIR亲和力的微小变化会对c-Myc浓度产生实质性影响。

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