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An Optimized Bistable Metabolic Switch To Decouple Phenotypic States during Anaerobic Fermentation

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논문

An Optimized Bistable Metabolic Switch To Decouple Phenotypic States during Anaerobic Fermentation

학술지

ACS Synthetic biology

저자명

Venayak, Naveen; Raj, Kaushik; Jaydeep, Rohil; Mahadevan, Radhakrishnan

초록

<P>Metabolic engineers aim to genetically modify microorganisms to improve their ability to produce valuable compounds. Despite the prevalence of growth-coupled production processes, these strategies can significantly limit production rates. Instead, rates can be improved by decoupling and optimizing growth and production independently, and operating with a growth stage followed by a production stage. Here, we implement a bistable transcriptional controller to decouple and switch between these two states. We optimize the controller in anaerobic conditions, typical of industrial fermentations, to ensure stability and tight expression control, while improving switching dynamics. The stability of this controller can be maintained through a simulated seed train scale-up from 5 mL to 500 000 L, indicating industrial feasibility. Finally, we demonstrate a two-stage production process using our optimal construct to improve the instantaneous rate of lactate production by over 50%, motivating the use of these systems in broad metabolic engineering applications.</P><BR>[FIG OMISSION]</BR>

발행연도

2018

발행기관

American Chemical Society

ISSN

2161-5063

7

12

페이지

pp.2854-2866

주제어

dynamic control; bistable switch; two-stage production; anaerobic fermentation; lactic acid

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논문; 2018-12-31

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