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双输出生物分子网络的调控策略。

Regulation strategies for two-output biomolecular networks.

机构信息

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

Department of Biology, University of Oxford, Oxford OX1 3RB, UK.

出版信息

J R Soc Interface. 2023 Aug;20(205):20230174. doi: 10.1098/rsif.2023.0174. Epub 2023 Aug 2.

Abstract

Feedback control theory facilitates the development of self-regulating systems with desired performance which are predictable and insensitive to disturbances. Feedback regulatory topologies are found in many natural systems and have been of key importance in the design of reliable synthetic bio-devices operating in complex biological environments. Here, we study control schemes for biomolecular processes with two outputs of interest, expanding previously described concepts based on single-output systems. Regulation of such processes may unlock new design possibilities but can be challenging due to coupling interactions; also potential disturbances applied on one of the outputs may affect both. We therefore propose architectures for robustly manipulating the ratio/product and linear combinations of the outputs as well as each of the outputs independently. To demonstrate their characteristics, we apply these architectures to a simple process of two mutually activated biomolecular species. We also highlight the potential for experimental implementation by exploring synthetic realizations both and . This work presents an important step forward in building bio-devices capable of sophisticated functions.

摘要

反馈控制理论促进了具有理想性能的自调节系统的发展,这些系统可预测且对干扰不敏感。反馈调节拓扑结构存在于许多自然系统中,并且在设计在复杂生物环境中运行的可靠合成生物器件方面具有关键重要性。在这里,我们研究了具有两个感兴趣输出的生物分子过程的控制方案,扩展了先前基于单输出系统描述的概念。这种过程的调节可能会开辟新的设计可能性,但由于耦合相互作用,可能会具有挑战性;施加在一个输出上的潜在干扰也可能会影响两个输出。因此,我们提出了用于稳健地操纵输出的比/积和线性组合以及每个输出的架构。为了展示它们的特性,我们将这些架构应用于两个相互激活的生物分子物种的简单过程中。我们还通过探索 和 两种合成实现来突出其实验实现的潜力。这项工作在构建能够执行复杂功能的生物器件方面迈出了重要的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa5f/10394417/b208001a70fa/rsif20230174f01.jpg

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