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Harnessing the respiration machinery for high-yield production of chemicals in metabolically engineered Lactococcus lactis.

Metab Eng.. 2017-11; 
Liu J, Wang Z, Kandasamy V, Lee SY, Solem C, Jensen PR.
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Catalog Antibody ... The codon-optimized version of BsBdh gene (bdhA) (GenScript, Piscataway, USA) from B. subtilis was used for biosynthesis of R-BDO. The complete sequence of the synthetic gene is shown in Table S2. 2.4. Quantification ... Get A Quote

摘要

When modifying the metabolism of living organisms with the aim of achieving biosynthesis of useful compounds, it is essential to ensure that it is possible to achieve overall redox balance. We propose a generalized strategy for this, based on fine-tuning of respiration. The strategy was applied on metabolically engineered Lactococcus lactis strains to optimize the production of acetoin and (R,R)-2,3-butanediol (R-BDO). In the absence of an external electron acceptor, a surplus of two NADH per acetoin molecule is produced. We found that a fully activated respiration was able to efficiently regenerate NAD+, and a high titer of 371mM (32g/L) of acetoin was obtained with a yield of 82% of the theoretical maximum. S... More

关键词

(R,R)-2,3-butanediol; Acetoin; Hemin; Lactococcus lactis; Respiration capacity