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Multiple feedback loop design in the tryptophan regulatory network of Escherichia coli suggests a paradigm for robust regulation of processes in series

机译:大肠杆菌色氨酸调节网络中的多反馈回路设计为串联过程的稳健调节提供了范例

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摘要

Biological networks have evolved through adaptation in uncertain environments. Of the different possible design paradigms, some may offer functional advantages over others. These designs can be quantified by the structure of the network resulting from molecular interactions and the parameter values. One may, therefore, like to identify the design motif present in the evolved network that makes it preferable over other alternatives. In this work, we focus on the regulatory networks characterized by serially arranged processes, which are regulated by multiple feedback loops. Specifically, we consider the tryptophan system present in Escherichia coli, which may be conceptualized as three processes in series, namely transcription, translation and tryptophan synthesis. The multiple feedback loop motif results from three distinct negative feedback loops, namely genetic repression, mRNA attenuation and enzyme inhibition. A framework is introduced to identify the key design components of this network responsible for its physiological performance. We demonstrate that the multiple feedback loop motif, as seen in the tryptophan system, enables robust performance to variations in system parameters while maintaining a rapid response to achieve homeostasis. Superior performance, if arising from a design principle, is intrinsic and, therefore, inherent to any similarly designed system, either natural or engineered. An experimental engineering implementation of the multiple feedback loop design on a two-tank system supports the generality of the robust attributes offered by the design.
机译:通过在不确定的环境中进行适应,生物网络得到了发展。在不同的可能设计范式中,某些可能提供功能上的优势。这些设计可以通过分子相互作用和参数值产生的网络结构进行量化。因此,人们可能想识别存在于进化网络中的设计主题,这使其比其他替代品更为可取。在这项工作中,我们专注于以串行安排的流程为特征的监管网络,这些流程由多个反馈回路进行监管。具体来说,我们考虑大肠杆菌中存在的色氨酸系统,可以将其概念化为一系列的三个过程,即转录,翻译和色氨酸合成。多重反馈环基序来自三个不同的负反馈环,即遗传抑制,mRNA衰减和酶抑制。引入一个框架来识别负责其生理性能的该网络的关键设计组件。我们证明,在色氨酸系统中看到的多重反馈回路模体能够对系统参数的变化实现强大的性能,同时保持对稳态的快速响应。如果由设计原理产生,则优越的性能是固有的,因此对于任何自然或工程设计的类似系统都是固有的。在两缸系统上的多反馈回路设计的实验工程实现支持该设计提供的强大属性的一般性。

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