Metabolic engineering of Escherichia coli for direct production of 1,4-butanediol

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1,4-Butanediol (BDO) is an important commodity chemical used to manufacture over 2.5 million tons annually of valuable polymers, and it is currently produced exclusively through feedstocks derived from oil and natural gas. Herein we report what are to our knowledge the first direct biocatalytic routes to BDO from renewable carbohydrate feedstocks, leading to a strain of Escherichia coli capable of producing 18 gl-1 of this highly reduced, non-natural chemical. A pathway-identification algorithm elucidated multiple pathways for the biosynthesis of BDO from common metabolic intermediates. Guided by a genome-scale metabolic model, we engineered the E. coli host to enhance anaerobic operation of the oxidative tricarboxylic acid cycle, thereby generating reducing power to drive the BDO pathway. The organism produced BDO from glucose, xylose, sucrose and biomass-derived mixed sugar streams. This work demonstrates a systems-based metabolic engineering approach to strain design and development that can enable new bioprocesses for commodity chemicals that are not naturally produced by living cells.
Publisher
NATURE PUBLISHING GROUP
Issue Date
2011-07
Language
English
Article Type
Article
Citation

NATURE CHEMICAL BIOLOGY, v.7, no.7, pp.445 - 452

ISSN
1552-4450
URI
http://hdl.handle.net/10203/98023
Appears in Collection
CBE-Journal Papers(저널논문)
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