Strategy for efficiently utilizing Escherichia coli cells producing isobutanol by combining isobutanol and indigo production systems

Isobutanol is a potential biofuel, and its microbial production systems have demonstrated promising results. In a microbial system, the isobutanol produced is secreted into the media; however, the cells remaining after fermentation cannot be used efficiently during the isobutanol recovery process an...

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Veröffentlicht in:Journal of biotechnology 2023-04, Vol.367, p.62-70
Hauptverfasser: Cho, Do Hyun, Kim, Hyun Jin, Oh, Suk Jin, Hwang, Jeong Hyeon, Shin, Nara, Bhatia, Shashi Kant, Yoon, Jeong-Jun, Jeon, Jong-Min, Yang, Yung-Hun
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Sprache:eng
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Zusammenfassung:Isobutanol is a potential biofuel, and its microbial production systems have demonstrated promising results. In a microbial system, the isobutanol produced is secreted into the media; however, the cells remaining after fermentation cannot be used efficiently during the isobutanol recovery process and are discarded as waste. To address this, we aimed to investigate the strategy of utilizing these remaining cells by combining the isobutanol production system with the indigo production system, wherein the product accumulates intracellularly. Accordingly, we constructed E. coli systems with genes, such as acetolactate synthase gene (alsS), ketol-acid reductoisomerase gene (ilvC), dihydroxyl-acid dehydratase (ilvD), and alpha-ketoisovalerate decarboxylase gene (kivD), for isobutanol production and genes, such as tryptophanase gene (tnaA) and flavin-containing monooxygenase gene (FMO), for indigo production. This system produced isobutanol and indigo simultaneously while accumulating indigo within cells. The production of isobutanol and indigo exhibited a strong linear correlation up to 72 h of production time; however, the pattern of isobutanol and indigo production varied. To our knowledge, this study is the first to simultaneously produce isobutanol and indigo and can potentially enhance the economy of biochemical production. •We designed a system for the simultaneous production of isobutanol and indigo.•Isobutanol-produced E. coli cells can be recycled and utilized for indigo production.•Localized isobutanol and indigo production allow easy downstream purification.•Isobutanol and indigo production was linear up to 72 h of production time.•This approach serves as a basis for the low-cost production of valuable products.
ISSN:0168-1656
1873-4863
DOI:10.1016/j.jbiotec.2023.03.012