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Regulation of Gene Activation by Competitive Cross Talking Pathways

机译:竞争交通衔接通路的基因激活调节

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摘要

The phenomenon of a gene expression burst has been attributed to random transitions between the active and inactive states of a gene. However, the mechanisms underlying regulation of the activation process in response to environmental changes remain unclear. Here, we model gene activation as a consequence of the competitive cross talk between a weak basal pathway and an inducible signaling pathway and reveal rich expression dynamics along with intricate dependence of noise and Fano factor on mean expression levels. These theoretical results are in good agreement with a large experimental data set in Escherichia coli, yeast, and mammalian cells. Furthermore, both theoretical analyses and supporting biological evidence converge to demonstrate the existence of a tradeoff that governs the sharp up- and downregulation of gene expression, suggesting an ordered scenario that activates a gene under varying conditions. These regulation modes, together with cross talk pathways, may provide new guidance for the analysis and interpretation of genetic data in various applications, ranging from genetic engineering to therapeutic targets of disease.
机译:基因表达突发的现象归因于基因的活性和无活性状态之间的随机转变。然而,对环境变动响应环境变化的激活过程调节的机制仍不清楚。在此,我们模拟基因激活作为弱基底途径与诱导信号通路之间的竞争交叉谈话,并揭示富有的表达动态以及噪声和扇形因子对平均表达水平的复杂依赖性。这些理论结果与大肠杆菌,酵母和哺乳动物细胞中的大型实验数据吻合良好。此外,理论分析和支持生物学证据融合,以证明存在治理基因表达的急剧上调和下调的权衡,这表明在不同条件下激活基因的有序场景。这些调节模式与交叉谈话途径一起,可以为各种应用中的遗传数据分析和解释提供新的指导,从基因工程到治疗疾病目标。

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