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Transient dynamic phenotypes as criteria for model discrimination: fold-change detection in Rhodobacter sphaeroides chemotaxis

机译:瞬态动态表型作为模型判别的标准:球形红球菌趋化性的倍数变化检测

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摘要

The chemotaxis pathway of the bacterium Rhodobacter sphaeroides shares many similarities with that of Escherichia coli. It exhibits robust adaptation and has several homologues of the latter's chemotaxis proteins. Recent theoretical results have correctly predicted that the E. coli output behaviour is unchanged under scaling of its ligand input signal; this property is known as fold-change detection (FCD). In the light of recent experimental results suggesting that R. sphaeroides may also show FCD, we present theoretical assumptions on the R. sphaeroides chemosensory dynamics that can be shown to yield FCD behaviour. Furthermore, it is shown that these assumptions make FCD a property of this system that is robust to structural and parametric variations in the chemotaxis pathway, in agreement with experimental results. We construct and examine models of the full chemotaxis pathway that satisfy these assumptions and reproduce experimental time-series data from earlier studies. We then propose experiments in which models satisfying our theoretical assumptions predict robust FCD behaviour where earlier models do not. In this way, we illustrate how transient dynamic phenotypes such as FCD can be used for the purposes of discriminating between models that reproduce the same experimental time-series data.
机译:球形球形红细菌的化学趋化途径与大肠杆菌具有许多相似性。它显示出强健的适应性,并具有后者的趋化蛋白的多个同源物。最近的理论结果正确地预测,在其配体输入信号的缩放下,大肠杆菌的输出行为不会改变。此属性称为倍数变化检测(FCD)。鉴于最近的实验结果表明,球形红球菌也可能显示FCD,我们提出了关于球形红球菌化学感觉动力学的理论假设,这些理论假设可以证明产生FCD行为。此外,表明这些假设使FCD成为该系统的特性,与实验结果一致,该特性对趋化途径中的结构和参数变化具有鲁棒性。我们构建并检查满足这些假设的完整趋化途径模型,并从早期研究中再现实验时间序列数据。然后,我们提出了一些实验,在这些实验中,满足我们理论假设的模型可以预测鲁棒的FCD行为,而早期的模型则不能。通过这种方式,我们说明了如何将瞬态动态表型(例如FCD)用于区分再现相同实验时间序列数据的模型的目的。

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