| Literature DB >> 30275907 |
Rui Miao1, Hao Xie1, Peter Lindblad1.
Abstract
BACKGROUND: Cyanobacteria, oxygenic photoautotrophic prokaryotes, can be engineered to produce various valuable chemicals from solar energy and CO2 in direct processes. The concept of photosynthetic production of isobutanol, a promising chemical and drop-in biofuel, has so far been demonstrated for Synechocystis PCC 6803 and Synechococcus elongatus PCC 7942. In Synechocystis PCC 6803, a heterologous expression of α-ketoisovalerate decarboxylase (Kivd) from Lactococcus lactis resulted in an isobutanol and 3-methyl-1-butanol producing strain. Kivd was identified as a bottleneck in the metabolic pathway and its activity was further improved by reducing the size of its substrate-binding pocket with a single replacement of serine-286 to threonine (KivdS286T). However, isobutanol production still remained low.Entities:
Keywords: Co-expression; Cultivation condition; Cumulative titer; Metabolic bottleneck; Synechocystis
Year: 2018 PMID: 30275907 PMCID: PMC6158846 DOI: 10.1186/s13068-018-1268-8
Source DB: PubMed Journal: Biotechnol Biofuels ISSN: 1754-6834 Impact factor: 6.040
Fig. 1Growth and isobutanol titer produced from engineered Synechocystis PCC 6803 strain pEEK2-ST in different cultivation conditions. a Growth and isobutanol production titer of the cells grew under 15 μmol photons m−2 s−1, 50 μmol photons m−2 s−1, and 100 μmol photons m−2 s−1 light intensities without any pH adjustment. b Growth and isobutanol production titer of the cells grew under 50 μmol photons m−2 s−1 with different pH adjustments. The target pH range for the pH adjustment, using either HEPES or HCl, was between pH 7 and 8. The pH labeled on the growth curve was the final pH measured in the end of the cultivation. Results represent the mean of three biological replicates; error bars represent standard deviation
Fig. 2Growth, isobutanol/3M1B in-flask and cumulative titer observed in a long-term cultivation experiment. The OD750 was measured every day and product titer was measured every second day. S1, S2, and S3 represent different periods in the steady-state phase. Results represent the mean of three biological replicates and error bars represent standard deviation
Isobutanol production rates in the different phases of the long-term cultivation of engineered Synechocystis PCC 6803
| Time | In-flask (mg l−1 day−1) | Cumulative (mg l−1 day−1) | |
|---|---|---|---|
| Growth phase | Days 2–10 | 22.6 ± 0.4 | 26.6 ± 0.3 |
| Steady-state phase (total) | Days 10–46 | 5.7 ± 0.2 | 19.0 ± 0.3 |
| Steady-state phase (S1) | Days 10–22 | 11.2 ± 0.5 | 21.9 ± 0.4 |
| Steady-state phase (S2) | Days 23–35 | 10.3 ± 1.5 | 25.9 ± 1.8 |
| Steady-state phase (S3) | Days 36–46 | − 4.2 ± 0.7 | 12.9 ± 0.8 |
| Maximal rate | Days 4–6 | 41.1 ± 3.5 | 43.6 ± 3.3 |
Fig. 3Schematic overview of the isobutanol synthesis pathway, the genetic constructs for identifying respective bottleneck, and the results from the engineered Synechocystis PCC 6803 strains containing different constructs. a Isobutanol synthesis pathway. The heterogenous enzymes are colored in brown: acetolactate synthase (AlsS) from Bacillus subtilis (B. subtilis), acetohydroxy acid isomeroreductase (IlvC), dihydroxy acid dehydratase (IlvD) from E. coli, and α-ketoisovalerate decarboxylase (Kivd) from L. lactis. The endogenous genes are colored in green. The gene-encoding alcohol dehydrogenase used here is the codon-optimized slr1192 (slr1192OP). b Genetic concepts, growth curve, isobutanol titer, SDS-PAGE, and western immunoblot from the engineered strains containing single operon. GOI Gene of interest. KivdS286T and slr1192OP-encoded alcohol dehydrogenase were strep-tagged and the other genes were flag-tagged. BCD is the bicistronic design for providing more reliable expression. c Growth curve, isobutanol titer, SDS-PAGE, and Western blot from the engineered strains containing convergent-oriented operons. KivdS286T was strep-tagged and the other genes were Flag-tagged. RiboJ is a self-cleaving ribozyme for providing more reliable expression. Size of the proteins are: AlsS: 62 kDa, IlvC: 54 kDa, IlvD: 65 kDa, KivdS286T: 61 kDa, Sll1981: 60 kDa, Sll1363: 40 kDa, Slr0452: 59 kDa, Slr1192: 36 kDa, Sll0065: 21 kDa, Slr2088: 68 kDa