Engineering Saccharomyces cerevisiae with the deletion of endogenous glucosidases for the production of flavonoid glucosides

Abstract Background Glycosylation of flavonoids is a promising approach to improve the pharmacokinetic properties and biological activities of flavonoids. Recently, many efforts such as enzymatic biocatalysis and the engineered Escherichia coli biotransformation have increased the production of flavonoid glucosides. However, the low yield of flavonoid glucosides can not meet the increasing demand for human medical and dietary needs. Saccharomyces cerevisiae is a generally regarded as safe (GRAS) organism that has several attractive characteristics as a metabolic engineering platform for the production of flavonoid glucosides. However, endogenous glucosidases of S. cerevisiae as a whole-cell biocatalyst reversibly hydrolyse the glucosidic bond and hinder the biosynthesis of the desired products. In this study, a model flavonoid, scutellarein, was used to exploit how to enhance the production of flavonoid glucosides in the engineered S. cerevisiae. Results To produce flavonoid glucosides, three flavonoid glucos...

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PID https://www.doi.org/10.6084/m9.figshare.c.3613847.v1
URL https://dx.doi.org/10.6084/m9.figshare.c.3613847.v1
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Author Huimin Wang
Author Yang, Yan
Author Lin, Lin
Author Wenlong Zhou
Author Minzhi Liu
Author Kedi Cheng
Author Wang, Wei
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Publication Date 2016-12-14
Publisher Figshare
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keyword FOS: Chemical sciences
keyword FOS: Biological sciences
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Source https://science-innovation-policy.openaire.eu/search/dataset?datasetId=scholix_____::4035afad724778c81a371982387a28ab
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Last Updated 3 January 2021, 18:02 (CET)
Created 3 January 2021, 18:02 (CET)