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Multistability in the lactose utilization network of Escherichia coli

机译:大肠杆菌乳糖利用网络中的多重稳定性

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Multistability, the capacity to achieve multiple internal states in response to a single set of external inputs, is the defining characteristic of a switch. Biological switches are essential for the determination of cell fate in multicellular organisms, the regulation of cell-cycle oscillations during mitosis and the maintenance of epigenetic traits in microbes. The multistability of several natural and synthetic systems has been attributed to positive feedback loops in their regulatory networks. However, feedback alone does not guarantee multistability. The phase diagram of a multistable system, a concise description of internal states as key parameters are varied, reveals the conditions required to produce a functional switch. Here we present the phase diagram of the bistable lactose utilization network of Escherichia coli. We use this phase diagram, coupled with a mathematical model of the network, to quantitatively investigate processes such as sugar uptake and transcriptional regulation in vivo. We then show how the hysteretic response of the wild-type system can be converted to an ultrasensitive graded response. The phase diagram thus serves as a sensitive probe of molecular interactions and as a powerful tool for rational network design.
机译:多重稳定性,即响应一组外部输入而实现多种内部状态的能力,是开关的定义特性。生物开关对于确定多细胞生物中的细胞命运,调节有丝分裂期间细胞周期的振荡以及维持微生物的表观遗传特性至关重要。几种天然和合成系统的多重稳定性归因于其监管网络中的正反馈回路。但是,仅反馈并不能保证多重稳定性。多稳态系统的相图,对关键参数变化时内部状态的简洁描述,揭示了生产功能开关所需的条件。在这里,我们介绍了大肠杆菌的双稳态乳糖利用网络的相图。我们使用此相图,再加上网络的数学模型,来定量研究体内糖吸收和转录调控等过程。然后,我们展示了如何将野生型系统的滞后响应转换为超敏感的渐变响应。因此,相图可作为分子相互作用的灵敏探针,并且是进行合理网络设计的有力工具。

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