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Dual regulation of cytoplasmic and mitochondrial acetyl-CoA utilization for improved isoprene production in Saccharomyces cerevisiae

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논문

Dual regulation of cytoplasmic and mitochondrial acetyl-CoA utilization for improved isoprene production in Saccharomyces cerevisiae

학술지

Nature communications

저자명

Lv, Xiaomei; Wang, Fan; Zhou, Pingping; Ye, Lidan; Xie, Wenping; Xu, Haoming; Yu, Hongwei

초록

<▼1><P>Microbial production of isoprene from renewable feedstock is a promising alternative to traditional petroleum-based processes. Currently, efforts to improve isoprenoid production in <I>Saccharomyces cerevisiae</I> mainly focus on cytoplasmic engineering, whereas comprehensive engineering of multiple subcellular compartments is rarely reported. Here, we propose dual metabolic engineering of cytoplasmic and mitochondrial acetyl-CoA utilization to boost isoprene synthesis in <I>S. cerevisiae</I>. This strategy increases isoprene production by 2.1-fold and 1.6-fold relative to the recombinant strains with solely mitochondrial or cytoplasmic engineering, respectively. By combining a modified reiterative recombination system for rapid pathway assembly, a two-phase culture process for dynamic metabolic regulation, and aerobic fed-batch fermentation for sufficient supply of acetyl-coA and carbon, we achieve 2527, mg l<SUP>&#x2212;1</SUP> of isoprene, which is the highest ever reported in engineered eukaryotes. We propose this strategy as an efficient approach to enhancing isoprene production in yeast, which might open new possibilities for bioproduction of other value-added chemicals.</P></▼1><▼2><P>[GRAPHIC OMISSION]Microbial production of isoprene from renewable feedstock is a promising alternative to petroleum-based processes. Here, the authors show that isoprene production in the yeast <I>Saccharomyces cerevisiae</I> can be improved by dual metabolic engineering of cytoplasmic and mitochondrial acetyl-CoA utilization.</P></▼2>

발행연도

2016

발행기관

Nature Publishing Group

라이선스

cc-by

ISSN

2041-1723

7

페이지

pp.12851

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논문; 2016-09-21

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