Metabolic rewiring of synthetic pyruvate dehydrogenase bypasses for acetone production in cyanobacteria

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30

초록

Designing synthetic pathways for efficient CO(2)fixation and conversion is essential for sustainable chemical production. Here we have designed a synthetic acetate-acetyl-CoA/malonyl-CoA (AAM) bypass to overcome an enzymatic activity of pyruvate dehydrogenase complex. This synthetic pathway utilizes acetate assimilation and carbon rearrangements using a methyl malonyl-CoA carboxyltransferase. We demonstrated direct conversion of CO(2)into acetyl-CoA-derived acetone as an example in photosyntheticSynechococcus elongatusPCC 7942 by increasing the acetyl-CoA pools. The engineered cyanobacterial strain with the AAM-bypass produced 0.41 g/L of acetone at 0.71 m/day of molar productivity. This work clearly shows that the synthetic pyruvate dehydrogenase bypass (AAM-bypass) is a key factor for the high-level production of an acetyl-CoA-derived chemical in photosynthetic organisms.

키워드

cyanobacteriasynthetic pyruvate dehydrogenase bypassCO(2)conversionmetabolic engineeringCARBON-DIOXIDEPHOTOSYNTHETIC PRODUCTIONCO2PATHWAYCONVERSION1-BUTANOLFIXATIONETHANOL
제목
Metabolic rewiring of synthetic pyruvate dehydrogenase bypasses for acetone production in cyanobacteria
저자
Lee, Hyun JeongSon, JigyeongSim, Sang JunWoo, Han Min
DOI
10.1111/pbi.13342
발행일
2020-09
유형
Article
저널명
Plant Biotechnology Journal
18
9
페이지
1860 ~ 1868