4.2 Article

Expression of Codon-Optimized Plant Glycosyltransferase UGT72B14 in Escherichia coli Enhances Salidroside Production

期刊

BIOMED RESEARCH INTERNATIONAL
卷 2016, 期 -, 页码 -

出版社

HINDAWI LTD
DOI: 10.1155/2016/9845927

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资金

  1. Beijing Natural Science Foundation [2164059]
  2. Beijing Outstanding Talent Project [2013D005021000003]
  3. Funding Project for Scientific Research Quality Improvement in Beijing University of Agriculture [GJB2013006, GZL2015012]
  4. Beijing Municipal Education Commission [CEFF-PXM2016_014207_000038]
  5. National Natural Science Foundation of China [31300620, 31370674]
  6. Foundation of Beijing Municipal Education Committee [KM20140020001]

向作者/读者索取更多资源

Salidroside, a plant secondary metabolite in Rhodiola, has been demonstrated to have several adaptogenic properties as amedicinal herb. Due to the limitation of plant source, microbial production of salidroside by expression of plant uridine diphosphate glycosyltransferase (UGT) is promising. However, glycoside production usually remains hampered by poor expression of plant UGTs in microorganisms. Herein, we achieved salidroside production by expression of Rhodiola UGT72B14 in Escherichia coli (E. coli) and codon optimization was accordingly applied. UGT72B14 expression was optimized by changing 278 nucleotides and decreasing the G+C content to 51.05% without altering the amino acid sequence. The effect of codon optimization on UGT72B14 catalysis for salidroside production was assessed both in vitro and in vivo. In vitro, salidroside production by codon-optimized UGT72B14 is enhanced because of a significantly improved protein yield (increased by 4.8-fold) and an equivalently high activity as demonstrated by similar kinetic parameters (K-M and V-max), compared to that by wild-type protein. In vivo, both batch and fed-batch cultivation using the codon-optimized gene resulted in a significant increase in salidroside production, which was up to 6.7 mg/L increasing 3.2-fold over the wild-type UGT72B14.

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