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Optimization of ethylene glycol production from (D)-xylose via a synthetic pathway implemented in Escherichia coli

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논문

Optimization of ethylene glycol production from (D)-xylose via a synthetic pathway implemented in Escherichia coli

학술지

Microbial cell factories

저자명

Alkim, Ceren; Cam, Yvan; Trichez, Debora; Auriol, Clé ment; Spina, Lucie; Vax, Amé lie; Bartolo, Franç ois; Besse, Philippe; Franç ois, Jean Marie; Walther, Thomas

초록

<P><B>Background</B></P><P>Ethylene glycol (EG) is a bulk chemical that is mainly used as an anti-freezing agent and a raw material in the synthesis of plastics. Production of commercial EG currently exclusively relies on chemical synthesis using fossil resources. Biochemical production of ethylene glycol from renewable resources may be more sustainable.</P><P><B>Results</B></P><P>Herein, a synthetic pathway is described that produces EG in <I>Escherichia coli</I> through the action of (<SMALL>D</SMALL>)-xylose isomerase, (<SMALL>D</SMALL>)-xylulose-1-kinase, (<SMALL>D</SMALL>)-xylulose-1-phosphate aldolase, and glycolaldehyde reductase. These reactions were successively catalyzed by the endogenous xylose isomerase (XylA), the heterologously expressed human hexokinase (Khk-C) and aldolase (Aldo-B), and an endogenous glycolaldehyde reductase activity, respectively, which we showed to be encoded by <I>yqhD</I>. The production strain was optimized by deleting the genes encoding for (<SMALL>D</SMALL>)-xylulose-5 kinase (<I>xylB</I>) and glycolaldehyde dehydrogenase (<I>aldA</I>), and by overexpressing the candidate glycolaldehyde reductases YqhD, GldA, and FucO. The strain overproducing FucO was the best EG producer reaching a molar yield of 0.94 in shake flasks, and accumulating 20&nbsp;g/L EG with a molar yield and productivity of 0.91 and 0.37&nbsp;g/(L.h), respectively, in a controlled bioreactor under aerobic conditions.</P><P><B>Conclusions</B></P><P>We have demonstrated the feasibility to produce EG from (<SMALL>D</SMALL>)-xylose via a synthetic pathway in <I>E. coli</I> at approximately 90&nbsp;% of the theoretical yield.</P><P><B>Electronic supplementary material</B></P><P>The online version of this article (doi:10.1186/s12934-015-0312-7) contains supplementary material, which is available to authorized users.</P>

발행연도

2015

발행기관

BioMed Central

라이선스

cc-by

ISSN

1475-2859

14

페이지

pp.127

주제어

Synthetic metabolic pathway; Ethylene glycol; Xylose; Metabolic engineering; Escherichia coli

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1 2023-12-11

논문; 2015-09-04

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