Regulation strategies for two-output biomolecular networks

Author:

Alexis EmmanouilORCID,Schulte Carolin CMORCID,Cardelli LucaORCID,Papachristodoulou AntonisORCID

Abstract

AbstractFeedback 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 previous traditional concepts describing one-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 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 bothin vivoandin vitro. This work presents an important step forward in building bio-devices capable of sophisticated functions.

Publisher

Cold Spring Harbor Laboratory

Reference50 articles.

1. Foundations for engineering biology;In: Nature,2005

2. Synthetic biology: applications come of age;In: Nature Reviews Genetics,2010

3. Synthetic biology moving into the clinic;In: Science,2011

4. Realizing the potential of synthetic biology;In: Nature Reviews Molecular Cell Biology,2014

5. The second decade of synthetic biology: 2010–2020;In: Nature Communications,2020

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Regulation strategies for two-output biomolecular networks;Journal of The Royal Society Interface;2023-08

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