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The propagation of perturbations in rewired bacterial gene networks

机译:扰动在细菌基因网络中的传播

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What happens to gene expression when you add new links to a gene regulatory network? To answer this question, we profile 85 network rewirings in E. coli. Here we report that concerted patterns of differential expression propagate from reconnected hub genes. The rewirings link promoter regions to different transcription factor and s-factor genes, resulting in perturbations that span four orders of magnitude, changing up to B70% of the transcriptome. Importantly, factor connectivity and promoter activity both associate with perturbation size. Perturbations from related rewirings have more similar transcription profiles and a statistical analysis reveals similar to 20 underlying states of the system, associating particular gene groups with rewiring constructs. We examine two large clusters (ribosomal and flagellar genes) in detail. These represent alternative global outcomes from different rewirings because of antagonism between these major cell states. This data set of systematically related perturbations enables reverse engineering and discovery of underlying network interactions.
机译:当您向基因调控网络添加新链接时,基因表达会发生什么变化?为了回答这个问题,我们分析了大肠杆菌中的85个网络重新布线。在这里我们报告差异表达的协调模式从重新连接的集线器基因传播。重新布线将启动子区域链接到不同的转录因子和s因子基因,导致扰动跨越四个数量级,最多改变了转录组的B70%。重要的是,因子的连通性和启动子活性都与扰动大小有关。相关重新布线的扰动具有更相似的转录谱,并且统计分析显示该系统的20种基本状态相似,从而将特定基因组与重新布线构建体相关联。我们详细研究了两个大簇(核糖体和鞭毛基因)。由于这些主要细胞状态之间的拮抗作用,这些代表了来自不同重新布线的替代性全球结果。这个系统相关的扰动数据集使反向工程和发现潜在的网络交互成为可能。

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