4.7 Article

Extended Metabolic Biosensor Design for Dynamic Pathway Regulation of Cell Factories

期刊

ISCIENCE
卷 23, 期 7, 页码 -

出版社

CELL PRESS
DOI: 10.1016/j.isci.2020.101305

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资金

  1. MINECO/AEI
  2. EU [DPI2017-82896-C2-1-R]
  3. Universitat Politecnica de Valencia Talento Programme

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Transcription factor-based biosensors naturally occur in metabolic pathways to maintain cell growth and to provide a robust response to environmental fluctua-tions. Extended metabolic biosensors, i.e., the cascading of a bio-conversion pathway and a transcription factor (TF) responsive to the downstream effector metabolite, provide sensing capabilities beyond natural effectors for implement-ing context-aware synthetic genetic circuits and bio-observers. However, the engineering of such multi-step circuits is challenged by stability and robustness issues. In order to streamline the design of TF-based biosensors in metabolic pathways, here we investigate the response of a genetic circuit combining a TF-based extended metabolic biosensor with an antithetic integral circuit, a feed-back controller that achieves robustness against environmental fluctuations. The dynamic response of an extended biosensor-based regulated flavonoid pathway is analyzed in order to address the issues of biosensor tuning of the regulated pathway under industrial biomanufacturing operating constraints.

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