| Literature DB >> 26051114 |
Prakash Parajuli1, Ramesh Prasad Pandey2, Nguyen Thi Huyen Trang3, Amit Kumar Chaudhary4, Jae Kyung Sohng5.
Abstract
BACKGROUND: A multi-monocistronic synthetic vector was used to assemble multiple genes of a nucleotide diphosphate (NDP)-sugar biosynthetic pathway to construct robust genetic circuits for the production of valuable flavonoid glycosides in Escherichia coli. Characterized functional genes involved in the biosynthesis of uridine diphosphate (UDP)-glucose and thymidine diphosphate (TDP)-rhamnose from various microbial sources along with glucose facilitator diffusion protein (glf) and glucokinase (glk) from Zymomonas mobilis were assembled and overexpressed in a single synthetic multi-monocistronic operon.Entities:
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Year: 2015 PMID: 26051114 PMCID: PMC4459062 DOI: 10.1186/s12934-015-0261-1
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Figure 1a NDP-sugar (UDP-d-glucose and TDP-l-rhamnose) biosynthesis pathway in E. coli showing the pathway overexpressed genes and glycosyltransferases (green dots). b Newly constructed sugar cassettes for the biosynthesis of TDP-rhamnose and UDP-glucose using a multi-monocistronic vector piBR181.
Figure 2HPLC-PDA chromatogram and HR-QTOF ESI LC/MS analysis showing the production of fisetin glycosides (fisetin 3-O-glucoside and fisetin 3-O-rhamnoside) from the biotransformation of fisetin.
Figure 3Substrate optimization from different concentration of fisetin (0.2, 0.3, 0.4, 0.6, 0.8, 1.0 mM) according to the cell growth at OD600nm and production of fisetin 3-O-glucoside (a, b) and fisetin 3-O-rhamnoside (c, d) in 60 h incubation time by the strains S1 and S5, respectively.
Figure 4a Optimization of glucose concentration based on the recombinant strain S1 and S5 (S1 and S5 contains only GTs UGT78K1 and ArGt-3, respectively) in 48 h incubation. Maximum conversion of fisetin to respective glycosides was achieved while supplementing 10% additional glucose in the medium. b Production profile of respective glycosides in all the constructed recombinant strains (S1–S9) in optimized concentration of substrate (0.3 mM) and glucose (10%) in 48 h incubation time. Maximum conversion of fisetin to fisetin 3-O-glucoside was achieved to be ~100%. The conversion of fisetin to fisetin 3-O-rhamnoside was ~96%.
Figure 5The scale-up production of fisetin glycosides in 3 L fermentation at different time intervals. a Production profile of fisetin 3-O-glucoside by strain S4. b Production profile of fisetin 3-O-rhamnoside by strain S9. 0.35 mM fisetin dissolve in DMSO was successively added three times in both 3-L fermentation systems.
Figure 6Biotransformation of other flavonols (Fis-fisetin, Que-quercetin, Myr-myricetin, Kmf-kaempferol, Mor-morin) into respective glycosides using the best recombinant strains (S4 and S9).
Bacterial strains, plasmids used in this study
| Vectors and plasmids | Description | Source/references |
|---|---|---|
| pGEM®-T easy vector | General cloning vector, T7 and SP6 promoters, f1 ori, Ampr | Promega, USA |
| pIBR181 | Multi mono-cistronic vector modified from pET28a + , f1 pBR322 ori, Kmr | Chaudhary et al. [ |
| piBR181-UGT78K1 | piBR181 vector carrying UGT78K1 | This study |
| pET32(a) + ArGt-3 | pET32(a) + vector carrying ArGt-3 | This study |
| pET-Duet-pgm2.galU | pET-Duet vector carrying pgm2.galU | This study |
| piBR181-pgm2.galU.UGT78K1 | piBR181 vector carrying pgm2.galU.UGT78K1 | This study |
| piBR181-glf.glk.pgm2.galU.UGT78K1 | piBR181 vector carrying glf.glk.pgm2.galU.UGT78K1 | This study |
| pCDF-Duet-tgs.dh | pCDF-Duet vector carrying tgs.dh | Simkhada et al. [ |
| pACYC-Duet-ep.kr | pACYC-Duet vector carrying ep.kr | Simkhada et al. [ |
| piBR181-pgm2.galU | piBR181 vector carrying pgm2.galU | This study |
| piBR181-tgs.dh.ep.kr | piBR181 vector carrying tgs.dh.ep.kr | This study |
| PiBR181-tgs.dh.ep.kr.pgm2 | piBR181 vector carrying tgs.dh.ep.kr.pgm2.galU | This study |
| piBR181-tgs.dh.ep.kr.pgm2. glf.glk | piBR181 vector carrying tgs.dh.ep.kr.pgm2.galU.glf.glk | This study |
| piBR181-glf | piBR181 carrying glf from | This study |
| piBR181-glk | piBR181 carrying glk gene | This study |