A Genetically Encoded Biosensor for the Detection of Levulinic Acid

Levulinic acid (LA) is a valuable chemical used in fuel additives, fragrances, and polymers. In this study, we proposed possible biosynthetic pathways for LA production from lignin and poly(ethylene terephthalate). We also created a genetically encoded biosensor responsive to LA, which can be used f...

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Veröffentlicht in:Journal of microbiology and biotechnology 2023-04, Vol.33 (4), p.552-558
Hauptverfasser: Kim, Tae Hyun, Woo, Seung-Gyun, Kim, Seong Keun, Yoo, Byeong Hyeon, Shin, Jonghyeok, Rha, Eugene, Kim, Soo Jung, Kwon, Kil Koang, Lee, Hyewon, Kim, Haseong, Kim, Hee-Taek, Sung, Bong-Hyun, Lee, Seung-Goo, Lee, Dae-Hee
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Sprache:eng
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Zusammenfassung:Levulinic acid (LA) is a valuable chemical used in fuel additives, fragrances, and polymers. In this study, we proposed possible biosynthetic pathways for LA production from lignin and poly(ethylene terephthalate). We also created a genetically encoded biosensor responsive to LA, which can be used for screening and evolving the LA biosynthesis pathway genes, by employing an LvaR transcriptional regulator of KT2440 to express a fluorescent reporter gene. The LvaR regulator senses LA as a cognate ligand. The LA biosensor was first examined in an strain and was found to be non-functional. When the host of the LA biosensor was switched from to KT2440, the LA biosensor showed a linear correlation between fluorescence intensity and LA concentration in the range of 0.156-10 mM LA. In addition, we determined that 0.156 mM LA was the limit of LA detection in KT2440 harboring an LA-responsive biosensor. The maximal fluorescence increase was 12.3-fold in the presence of 10 mM LA compared to that in the absence of LA. The individual cell responses to LA concentrations reflected the population-averaged responses, which enabled high-throughput screening of enzymes and metabolic pathways involved in LA biosynthesis and sustainable production of LA in engineered microbes.
ISSN:1017-7825
1738-8872
DOI:10.4014/jmb.2301.01021