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Transcriptional regulatory networks in bacteria: from input signals to output responses

机译:细菌中的转录调控网络:从输入信号到输出响应

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Transcriptional regulatory systems play a central role in coordinating bacterial responses to diverse stimuli. These systems can be studied in progressive stages: from input signals to the final output. At the input stage, transcription factors (TFs) can be classified by their activation from endogenous or exogenous stimuli; in Escherichia coli, up to three-quarters of regulators are estimated to respond directly to extracellular signals through phosphorylation and smallmolecule binding. At the processing stage, the signals feed into a densely connected network. The endogenous regulators form most of the connections between TFs and, by dynamically rewiring interactions, they coordinate and distribute the appropriate responses for distinct cellular conditions. At the output stage, network motifs (which are specific patterns of interconnections within a small group of TFs and target genes) determine the precise temporal programme of gene expression changes. Eventually, these components of the regulatory system could be assembled to describe complex bacterial behaviour at the level of whole organisms.
机译:转录调节系统在协调细菌对多种刺激的反应中起着核心作用。这些系统可以逐步进行研究:从输入信号到最终输出。在输入阶段,转录因子(TFs)可以根据其来自内源性或外源性刺激的激活进行分类。在大肠杆菌中,据估计多达四分之三的调节剂通过磷酸化和小分子结合直接对细胞外信号作出反应。在处理阶段,信号馈入密集连接的网络。内源性调节剂形成了TF之间的大多数连接,并且通过动态地重新布线相互作用,它们针对不同的细胞条件协调并分配了适当的应答。在输出阶段,网络主题(这是一小组TF和目标基因中特定的互连方式)决定了基因表达变化的精确时间程序。最终,可以将调节系统的这些组件组装起来,以描述整个生物体水平上复杂的细菌行为。

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