Systems metabolic engineering to elucidate and enhance intestinal metabolic activities of Escherichia coli Nissle 1917

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Title
Systems metabolic engineering to elucidate and enhance intestinal metabolic activities of Escherichia coli Nissle 1917
Author(s)
Jungyeon Kim; Gun Hwi Yeon; Mi-Jin KimJung Hoon BaeJung Hoon SohnBong Hyun Sung
Bibliographic Citation
Journal of Agricultural and Food Chemistry, vol. 72, no. 32, pp. 18234-18246
Publication Year
2024
Abstract
Escherichia coli Nissle 1917 (EcN) is one of the most widely used probiotics to treat gastrointestinal diseases. Recently, many studies have engineered EcN to release therapeutic proteins to treat specific diseases. However, because EcN exhibits intestinal metabolic activities, it is difficult to predict outcomes after administration. In silico and fermentation profiles revealed mucin metabolism of EcN. Multiomics revealed that fucose metabolism contributes to the intestinal colonization of EcN by enhancing the synthesis of flagella and nutrient uptake. The multiomics results also revealed that excessive intracellular trehalose synthesis in EcN, which is responsible for galactose metabolism, acts as a metabolic bottleneck, adversely affecting growth. To improve the ability of EcN to metabolize galactose, otsAB genes for trehalose synthesis were deleted, resulting in the ΔotsAB strain; the ΔotsAB strain exhibited a 1.47-fold increase in the growth rate and a 1.37-fold increase in the substrate consumption rate relative to wild-type EcN.
Keyword
Escherichia coliNissle 1917Mucin sugar metabolismMultiomicsSystems metabolic engineeringAnaerobic fermentation
ISSN
0021-8561
Publisher
Amer Chem Soc
Full Text Link
http://dx.doi.org/10.1021/acs.jafc.4c00182
Type
Article
Appears in Collections:
Synthetic Biology and Bioengineering Research Institute > Synthetic Biology Research Center > 1. Journal Articles
Synthetic Biology and Bioengineering Research Institute > 1. Journal Articles
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