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Biotechnology and bioengineering. 2025 Mar 21. doi: 10.1002/bit.28976 Q23.52024

Engineering an Overflow-Responsive Regulation System for Balancing Cellular Redox and Optimizing Microbial Production

构建一种溢出响应调控系统来平衡细胞氧化还原和优化微生物生产 翻译改进

Jianli Zhang  1, Jian Wang  1, Tian Jiang  1, Xinyu Gong  1, Qi Gan  1, Yuxi Teng  1, Yusong Zou  1, Ainoor Anwar Dawadi  1, Yajun Yan  1

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  • 1 School of Chemical, Materials and Biomedical Engineering, College of Engineering, The University of Georgia, Athens, Georgia, USA.
  • DOI: 10.1002/bit.28976 PMID: 40119535

    摘要 Ai翻译

    Escherichia coli accumulates acetate as a byproduct in fast growth aerobic conditions when using glucose as carbon source. This phenomenon, known as overflow metabolism, has negative impacts on cell growth and protein expression, also causes carbon loss during biosynthesis in most microbial production scenarios. In this study, we regarded the "waste" metabolite as a useful metabolism indicator, constructed an overflow biosensor to monitor the change of acetate concentration and converted the signal into various regulation outputs. Phloroglucinol is a phenolic compound with several derivatives that exhibit various pharmacological activities. By applying the bifunctional dynamic regulation system on the phloroglucinol production, we released the cellular redox pressure in real-time and reduced the waste of carbon flux on overflow metabolism. Finally, carbon flux was redirected more favorably towards the desired product, resulting in a boosted phloroglucinol titer of 1.30 g/L, increased by 2.04-fold. Overall, this study explored the use of a central byproduct-responsive biosensor system on improving cellular metabolic status, providing a general approach for enhancing bioproduction.

    Keywords: acetate; biosensor; biosynthesis; dynamic regulation; overflow metabolism; redox ratio.

    Keywords:Cellular Redox; Balancing Cellular Redox; Microbial Production

    Copyright © Biotechnology and bioengineering. 中文内容为AI机器翻译,仅供参考!

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    期刊名:Biotechnology and bioengineering

    缩写:BIOTECHNOL BIOENG

    ISSN:0006-3592

    e-ISSN:1097-0290

    IF/分区:3.5/Q2

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