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- W3205094622 abstract "Abstract BackgroundThe limitation of storage space, product cytotoxicity and the competition for precursor is the major challenges for efficiently overproducing carotenoid in engineered non-carotenogenic microorganisms. In this work, to improve β-carotene accumulation in Saccharomyces cerevisiae , a strategy that simultaneous increases cell storage capability and strengthens metabolic flux to carotenoid pathway was developed using exogenous oleic acid (OA) combined with metabolic engineering approaches.ResultsThe direct separation of lipid droplets (LDs), quantitative analysis and genes disruption trial indicated that LDs are major storage locations of β-carotene in S. cerevisiae . However, due to the competition for precursor between β-carotene and LDs-triacylglycerol biosynthesis, enlarging storage space by engineering LDs related genes has minor promotion on β-carotene accumulation. Adding 2 mM OA significantly improved LDs-triacylglycerol metabolism and resulted in 36.4% increase in β-carotene content. The transcriptome analysis was adopted to mine OA-repressible promoters and IZH1 promoter was used to replace native ERG9 promoter to dynamically down-regulate ERG9 expression, which diverted the metabolic flux to β-carotene pathway and achieved additional 31.7% increase in β-carotene content without adversely affecting cell growth. By inducing an extra constitutive β-carotene synthesis pathway for further conversion precursor farnesol to β-carotene, the final strain produced 11.4 mg/DCW and 142 mg/L of β-carotene, which is 107.3% and 49.5% increase respectively over the parent strain. ConclusionsThis strategy can be applied in the overproduction of other heterogeneous FPP-derived hydrophobic compounds with similar synthesis and storage mechanisms in S. cerevisiae ." @default.
- W3205094622 created "2021-10-25" @default.
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- W3205094622 date "2021-10-19" @default.
- W3205094622 modified "2023-09-23" @default.
- W3205094622 title "Dual Regulation of Lipid Droplet-triacylglycerol Metabolism and ERG9 Expression for Improved β-carotene Production in Saccharomyces Cerevisiae" @default.
- W3205094622 doi "https://doi.org/10.21203/rs.3.rs-970886/v1" @default.
- W3205094622 hasPublicationYear "2021" @default.
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