Difference between revisions of "Part:BBa K5184000"
(→Sequences) |
|||
Line 17: | Line 17: | ||
===Characterization=== | ===Characterization=== | ||
7-epi-zingiberene (7epiZ), having repellent, fecundity-reducing, and toxic effects on the Tetranychidae mites, is a crucial ingredient of our acaricide. To produce it, we introduced two plasmids to <i>E. coli</i>: pMVA, which introduces the enzymes of the Mevalonate pathway, and pW1-ZIS-NPPS-Mvan4662, which introduces the subsequent enzymes necessary for the production of 7epiZ [Fig1A], [Fig?1]. | 7-epi-zingiberene (7epiZ), having repellent, fecundity-reducing, and toxic effects on the Tetranychidae mites, is a crucial ingredient of our acaricide. To produce it, we introduced two plasmids to <i>E. coli</i>: pMVA, which introduces the enzymes of the Mevalonate pathway, and pW1-ZIS-NPPS-Mvan4662, which introduces the subsequent enzymes necessary for the production of 7epiZ [Fig1A], [Fig?1]. | ||
− | The | + | The enzyme SltNPPS(NPPS), a neryl pyrophosphate synthase (NPP) presented in this part, is introduced together with LA2167ZIS(ZIS), the zingiberene synthethase, Mvan4662Q93S(Mvan4662), a Z,Z-farnesyl diphosphate (Z,Z-FPP) synthase to <i>E. coli</i> via plasmid expression [Fig1C]. The three enzymes are cloned into the vector pW1, giving pW1-ZIS-NPPS-Mvan4662. Coding sequences for ZIS is placed closest to the promoter to increase its expression level, for we believe it will likely be the rate-limiting enzyme of the three. |
<center><html><img src="https://static.igem.wiki/teams/5184/parts/scie81.webp" width="600"/></html></center> | <center><html><img src="https://static.igem.wiki/teams/5184/parts/scie81.webp" width="600"/></html></center> |
Revision as of 07:04, 30 September 2024
SltNPPS
Targeting both the prevention and extermination of spider mites, we aim to produce7-epi-zingiberene (7epiZ),a sesquiterpene that is found to have repellent, fecundity-reducing, and fatal effects towards spider mites. In order to synthesize7epiZ from glucose in E. coli, we introduce SltNPPS, a neryl diphosphate synthase which catalyzes the formation of neryl diphosphate (NPP) from dimethylallyldiphosphate (DMAPP) and isopentenyl diphosphate (IPP), products of the MVA pathway introduced in E. col. Through exploring the usage of SltNPPS, we provide future iGEM teams with an insight into how to biosynthesize sesquiterpenes using E. coli as the chassis.
Essential Information
Sequences
Sequence and Features
- 10COMPATIBLE WITH RFC[10]
- 12COMPATIBLE WITH RFC[12]
- 21COMPATIBLE WITH RFC[21]
- 23COMPATIBLE WITH RFC[23]
- 25COMPATIBLE WITH RFC[25]
- 1000COMPATIBLE WITH RFC[1000]
Usage and Biology
"SltNPPS is a cis-prenyl transferase from Solanum lycopersium with its N-terminal 45 amino acid truncated that catalyzes the conversion of geranyl diphosphate into neryl diphosphate, which is an essential step in the biosynthesis of monoterpenes in plants. We constructed a novel sesquiterpene synthesis pathway in E. coli Using glucose as our raw material, we introduce the MVA pathway, which transforms glucose into dimethylallyl diphosphate (DMAPP) and isopentenyl diphosphate (IPP). Afterwards, SltNPPS, a neryl diphosphate synthase catalyze the production of NPP from IPP and DMAPP. Mvan4662 is then introduced to catalyze the formation of Z,Z-FPP. In the end, ShZIS transforms Z,Z-FPP into 7epiZ. "
Characterization
7-epi-zingiberene (7epiZ), having repellent, fecundity-reducing, and toxic effects on the Tetranychidae mites, is a crucial ingredient of our acaricide. To produce it, we introduced two plasmids to E. coli: pMVA, which introduces the enzymes of the Mevalonate pathway, and pW1-ZIS-NPPS-Mvan4662, which introduces the subsequent enzymes necessary for the production of 7epiZ [Fig1A], [Fig?1]. The enzyme SltNPPS(NPPS), a neryl pyrophosphate synthase (NPP) presented in this part, is introduced together with LA2167ZIS(ZIS), the zingiberene synthethase, Mvan4662Q93S(Mvan4662), a Z,Z-farnesyl diphosphate (Z,Z-FPP) synthase to E. coli via plasmid expression [Fig1C]. The three enzymes are cloned into the vector pW1, giving pW1-ZIS-NPPS-Mvan4662. Coding sequences for ZIS is placed closest to the promoter to increase its expression level, for we believe it will likely be the rate-limiting enzyme of the three.
pW1-ZIS-Mvan4662-SltNPPS, via golden gate cloning, is transformed into E. coli strain DH5ɑ. After having sequence verified, plasmids are transformed into pMVA DH5ɑ competent cells. The resultant strain is thus capable of producing zingiberene using glucose as the sole carbon source.
The pW1-ZIS-Mvan4662-SltNPPS+pMVA DH5ɑ strain is induced by IPTG and its fermentation is carried out with dodecane as the solvent. The products are collected, and GC-MS analysis and structure elucidation results [Fig3A], [Fig3B] suggest that the desired 7epiZ is produced.