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  • Author: Yun EJ
  • References

Author: Yun EJ


References 13 references


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  • Liu JJ, et al. (2021) Investigating the role of the transcriptional regulator Ure2 on the metabolism of Saccharomyces cerevisiae: a multi-omics approach. Appl Microbiol Biotechnol 105(12):5103-5112 PMID:34152451
    • SGD Paper
    • DOI full text
    • PubMed
  • Kim DH, et al. (2020) Biological upgrading of 3,6-anhydro-L-galactose from agarose to a new platform chemical. Green Chem 22(5):1776-1785 PMID:33790689
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Kwak S, et al. (2020) Redirection of the Glycolytic Flux Enhances Isoprenoid Production in Saccharomyces cerevisiae. Biotechnol J 15(2):e1900173 PMID:31466140
    • SGD Paper
    • DOI full text
    • PubMed
  • Lane S, et al. (2020) Xylose assimilation enhances the production of isobutanol in engineered Saccharomyces cerevisiae. Biotechnol Bioeng 117(2):372-381 PMID:31631318
    • SGD Paper
    • DOI full text
    • PubMed
  • Lee JW, et al. (2020) Enhanced 2'-Fucosyllactose production by engineered Saccharomyces cerevisiae using xylose as a co-substrate. Metab Eng 62:322-329 PMID:33098975
    • SGD Paper
    • DOI full text
    • PubMed
  • Kwak S, et al. (2019) Production of biofuels and chemicals from xylose using native and engineered yeast strains. Biotechnol Adv 37(2):271-283 PMID:30553928
    • SGD Paper
    • DOI full text
    • PubMed
  • Liu JJ, et al. (2019) Overcoming the thermodynamic equilibrium of an isomerization reaction through oxidoreductive reactions for biotransformation. Nat Commun 10(1):1356 PMID:30902987
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Jayakody LN, et al. (2018) Direct conversion of cellulose into ethanol and ethyl-β-d-glucoside via engineered Saccharomyces cerevisiae. Biotechnol Bioeng 115(12):2859-2868 PMID:30011361
    • SGD Paper
    • DOI full text
    • PubMed
  • Jayakody LN, et al. (2018) Expression of Gre2p improves tolerance of engineered xylose-fermenting Saccharomyces cerevisiae to glycolaldehyde under xylose metabolism. Appl Microbiol Biotechnol 102(18):8121-8133 PMID:30027490
    • SGD Paper
    • DOI full text
    • PubMed
  • Liu JJ, et al. (2018) A Mutation in PGM2 Causing Inefficient Galactose Metabolism in the Probiotic Yeast Saccharomyces boulardii. Appl Environ Microbiol 84(10) PMID:29523547
    • SGD Paper
    • DOI full text
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  • Yun EJ, et al. (2018) Promiscuous activities of heterologous enzymes lead to unintended metabolic rerouting in Saccharomyces cerevisiae engineered to assimilate various sugars from renewable biomass. Biotechnol Biofuels 11:140 PMID:29785207
    • SGD Paper
    • DOI full text
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  • Xu H, et al. (2016) PHO13 deletion-induced transcriptional activation prevents sedoheptulose accumulation during xylose metabolism in engineered Saccharomyces cerevisiae. Metab Eng 34:88-96 PMID:26724864
    • SGD Paper
    • DOI full text
    • PubMed
  • Yun EJ, et al. (2015) Production of (S)-3-hydroxybutyrate by metabolically engineered Saccharomyces cerevisiae. J Biotechnol 209:23-30 PMID:26026703
    • SGD Paper
    • DOI full text
    • PubMed
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