| Literature DB >> 27052099 |
Sujin Kim1, Sang-Jeong Bae1, Ji-Sook Hahn1.
Abstract
Spatial organization of metabolic enzymes allows substrate channeling, which accelerates processing of intermediates. Here, we investigated the effect of substrate channeling on the flux partitioning at a metabolic branch point, focusing on pyruvate metabolism in Saccharomyces cerevisiae. As a platform strain for the channeling of pyruvate flux, PYK1-Coh-Myc strain was constructed in which PYK1 gene encoding pyruvate kinase is tagged with cohesin domain. By using high-affinity cohesin-dockerin interaction, the pyruvate-forming enzyme Pyk1 was tethered to heterologous pyruvate-converting enzymes, lactate dehydrogenase and α-acetolactate synthase, to produce lactic acid and 2,3-butanediol, respectively. Pyruvate flux was successfully redirected toward desired pathways, with a concomitant decrease in ethanol production even without genetic attenuation of the ethanol-producing pathway. This pyruvate channeling strategy led to an improvement of 2,3-butanediol production by 38%, while showing a limitation in improving lactic acid production due to a reduced activity of lactate dehydrogenase by dockerin tagging.Entities:
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Year: 2016 PMID: 27052099 PMCID: PMC4823786 DOI: 10.1038/srep24145
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic diagram of the overall concept of this research.
Pyruvate kinase (Pyk1) catalyzes the conversion of phosphoenolpyruvate (PEP) to pyruvate, the last step of glycolysis. Pyruvate is mainly converted to ethanol by the sequential actions of pyruvate decarboxylase (Pdc) and alcohol dehydrogenase (Adh) in S. cerevisiae. The PYK1-Coh-Myc strain expressing cohesin-tagged Pyk1 was constructed as a platform strain for the pyruvate channeling. (a) Overexpression of LdhA for lactate production or AlsS, AlsD, and Bdh1 for 2,3-butanediol production. Because cohesin-tagged Pyk1 cannot interact with native LdhA or AlsS, LdhA or AlsS competes with Pdc for the utilization of pyruvate, the common substrate. (b) Overexpression of LdhA-Doc for lactate production or AlsS-Doc, AlsD, and Bdh1 for 2,3-butanediol production. In PYK1-Myc-Coh strain, cohesin-dockerin interaction provides spatial proximity between cohesin-tagged Pyk1 and the dockerin-tagged LdhA or AlsS, resulting in pyruvate channeling to the interacting enzyme.
Figure 2Co-immunoprecipitation (co-IP) between Pyk1-Coh-Myc and dockerin-tagged enzyme.
Myc-tagged Pyk1 (Pyk1-Coh-Myc) was immunoprecipitated with anti-Myc antibody from PYK1-Coh-Myc strains expressing either HA-Bdh1 or HA-Bdh1-Doc. Cell lysates before immunoprecipitation (Input) and immunoprecipitates (IP) were analyzed by SDS-PAGE and immunoblotting (IB) with the indicated antibodies. HC indicates the position of the heavy chain of the anti-Myc antibody used for immunoprecipitation.
Figure 3The effect of substrate channeling on lactate production.
Fermentation profiles of PYK1-Myc (open symbol) and PYK1-Coh-Myc (closed symbol) strains, harboring (a) p415GPD-ldhA or (b) p415GPD-ldhADoc. (c) The bar graphs show the production titers of lactate (left) and ethanol (right) after 36 h fermentation. Cells were grown in SC-Leu media containing 50 g/L glucose. Error bars indicate standard deviations of three independent experiments.
Figure 4The effect of substrate channeling on 2,3-butanediol (2,3-BDO) production.
Fermentation profiles of PYK1-Myc (open symbol) and PYK1-Coh-Myc (closed symbol) strains, both harboring (a) p413-SDB or (b) p413-SDocDB. (c) The bar graphs show the production titers of 2,3-butanediol (left) and ethanol (right) after 30 h fermentation. Cells were grown in SC-His media containing 50 g/L glucose. Error bars indicate standard deviations of three independent experiments.
Strains and plasmids used in this study.
| Name | Description | Reference |
|---|---|---|
| Strains | ||
| CEN.PK2-1C | EUROSCARF | |
| PYK1-Myc | CEN.PK2-1C | This study |
| PYK1-Coh-Myc | CEN.PK2-1C | This study |
| Plasmids | ||
| pUG27 | Plasmid containing | EUROSCARF |
| pSH63 | CEN/ARS, | EUROSCARF |
| pET28b | His6-tagged protein expression plasmid, KanR | Novagen |
| p414GPD | CEN/ARS, | |
| p415GPD | CEN/ARS, | |
| p416GPD-GST-[Coh]2 | CEN/ARS, | |
| pUG27-Myc | Plasmid containing Myc-[ | This study |
| pUG27-Coh-Myc | Plasmid containing Cohesin-Myc-[ | This study |
| p414GPD-Cre | CEN/ARS, | This study |
| p415GPD-HA-BDH1 | CEN/ARS, | This study |
| p415GPD-HA-BDH1-Doc | CEN/ARS, | |
| p415GPD-Doc | CEN/ARS, | |
| p415GPD-ldhA | CEN/ARS, | |
| p415GPD-ldhADoc | CEN/ARS, | This study |
| pET28b-His-ldhA | His6-ldhA expression plasmid | This study |
| pET28b-His-ldhADoc | His6-ldhA-Doc expression plasmid | This study |
| p413GPD-alsS-Doc | CEN/ARS, | |
| p414_P | CEN/ARS, | |
| p414_P | CEN/ARS, | This study |
| p413-DB | CEN/ARS, | |
| p413-SDB | CEN/ARS, | |
| p413-SDocDB | CEN/ARS, | This study |