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二分反馈:基于信号隔离的生物控制器设计反馈机制。

Dichotomous feedback: a signal sequestration-based feedback mechanism for biocontroller design.

机构信息

Department of Engineering Science, University of Oxford, Oxford OX1 3PJ, UK.

Department of Biochemistry, University of Oxford, Oxford OX1 3PJ, UK.

出版信息

J R Soc Interface. 2022 Apr;19(189):20210737. doi: 10.1098/rsif.2021.0737. Epub 2022 Apr 20.

Abstract

We introduce a new design framework for implementing negative feedback regulation in synthetic biology, which we term 'dichotomous feedback'. Our approach is different from current methods, in that it sequesters existing fluxes in the process to be controlled, and in this way takes advantage of the process's architecture to design the control law. This signal sequestration mechanism appears in many natural biological systems and can potentially be easier to realize than 'molecular sequestration' and other comparison motifs that are nowadays common in biomolecular feedback control design. The loop is closed by linking the strength of signal sequestration to the process output. Our feedback regulation mechanism is motivated by two-component signalling systems, where a second response regulator could be competing with the natural response regulator thus sequestering kinase activity. Here, dichotomous feedback is established by increasing the concentration of the second response regulator as the level of the output of the natural process increases. Extensive analysis demonstrates how this type of feedback shapes the signal response, attenuates intrinsic noise while increasing robustness and reducing crosstalk.

摘要

我们引入了一种新的设计框架,用于在合成生物学中实现负反馈调节,我们称之为“二分反馈”。我们的方法与当前的方法不同,它将被控制过程中的现有通量隔离开来,并以这种方式利用过程的结构来设计控制律。这种信号隔离机制出现在许多自然生物系统中,并且可能比现今在生物分子反馈控制设计中常见的“分子隔离”和其他比较模式更容易实现。通过将信号隔离的强度与过程输出联系起来,闭环完成。我们的反馈调节机制受到双组分信号系统的启发,其中第二个响应调节剂可以与天然响应调节剂竞争,从而隔离激酶活性。在这里,随着自然过程输出水平的增加,通过增加第二个响应调节剂的浓度来建立二分反馈。广泛的分析表明,这种类型的反馈如何塑造信号响应,衰减固有噪声,同时提高鲁棒性并减少串扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bacd/9019519/96c7a9fb7b08/rsif20210737f01.jpg

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