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Enzyme-Assisted Microbial Electrosynthesis of Poly(3-hydroxybutyrate) via CO2 Bioreduction by Engineered Ralstonia eutropha

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논문

Enzyme-Assisted Microbial Electrosynthesis of Poly(3-hydroxybutyrate) via CO2 Bioreduction by Engineered Ralstonia eutropha

학술지

ACS catalysis

저자명

Chen, Xiaoli; Cao, Yingxiu; Li, Feng; Tian, Yao; Song, Hao

초록

<P>Microbial electrosynthesis (MES) is a promising technology to reduce carbon dioxide using inward electron transfer mechanisms to synthesize value-added chemicals with microorganisms as electrocatalysts and electrons from cathodes as reducing equivalents. To enhance CO<SUB>2</SUB> assimilation in <I>Ralstonia eutropha</I>, a formate dehydrogenase (FDH) assisted MES system was constructed, in which FDH catalyzed the reduction of CO<SUB>2</SUB> to formate in the cathodic chamber. Formate served as the electron carrier to transfer electrons derived from cathodes into <I>R. eutropha</I>. To enable efficient formation of formate from CO<SUB>2</SUB>, neutral red (NR) was used to facilitate the extracellular regeneration of NADH, the cofactor of FDH. Meanwhile, NR also played an essential role as electron shuttle to directly deliver electrons from cathodes into <I>R. eutropha</I> to increase the level of intracellular reducing equivalents, thus facilitating the efficiency of MES. On the other hand, the Calvin-Benson-Bassham (CBB) cycle was further engineered by the heterologous expression of the ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) in <I>R. eutropha</I>, which strengthened the CBB pathway for CO<SUB>2</SUB> fixation. Upon application of the cathode potential at &#x2212;0.6 V (vs Ag/AgCl) in the MES system with the genetically engineered <I>R. eutropha</I>, 485 ± 13 mg/L poly(3-hydroxybutyrate) (PHB) was obtained, which was ∼3 times that synthesized by the control (165 ± 8 mg/L), i.e., the wild-type <I>R. eutropha</I> in the absence of FDH and NR.</P><BR>[FIG OMISSION]</BR>

발행연도

2018

발행기관

American Chemical Society

ISSN

2155-5435

8

5

페이지

pp.4429-4437

주제어

microbial electrosynthesis; Ralstonia eutropha; formate dehydrogenase; Calvin&#x2212; Benson&#x2212; Bassham cycle; poly(3-hydroxybutyrate);

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논문; 2018-12-31

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