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Control of gene expression by modulated self-assembly

机译:通过调节自组装控制基因表达

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Numerous transcription factors self-assemble into different order oligomeric species in a way that is actively regulated by the cell. Until now, no general functional role has been identified for this widespread process. Here, we capture the effects of modulated self-assembly in gene expression with a novel quantitative framework. We show that this mechanism provides precision and flexibility, two seemingly antagonistic properties, to the sensing of diverse cellular signals by systems that share common elements present in transcription factors like p53, NF-kappa B, STATs, Oct and RXR. Applied to the nuclear hormone receptor RXR, this framework accurately reproduces a broad range of classical, previously unexplained, sets of gene expression data and corroborates the existence of a precise functional regime with flexible properties that can be controlled both at a genome-wide scale and at the individual promoter level.
机译:许多转录因子以一种受细胞主动调节的方式自组装成不同顺序的寡聚体。到目前为止,对于这种广泛的过程,尚未确定一般的功能作用。在这里,我们捕获了新型定量框架在基因表达中调节自组装的影响。我们表明,该机制通过共享存在于转录因子(如p53,NF-κB,STAT,Oct和RXR)中的共有元素的系统,为多种细胞信号的传感提供了精确度和灵活性,这两个看似拮抗的特性。应用于核激素受体RXR时,该框架可准确复制大量以前无法解释的经典基因表达数据集,并证实了具有灵活特性的精确功能区的存在,该功能区可在全基因组范围内控制。在个人发起人层面。

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