Systems metabolic engineering of Escherichia coli for L-threonine production

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Amino-acid producers have traditionally been developed by repeated random mutagenesis owing to the difficulty in rationally engineering the complex and highly regulated metabolic network. Here, we report the development of the genetically defined L-threonine overproducing Escherichia coli strain by systems metabolic engineering. Feedback inhibitions of aspartokinase I and III ( encoded by thrA and lysC, respectively) and transcriptional attenuation regulations ( located in thrL) were removed. Pathways for Thr degradation were removed by deleting tdh and mutating ilvA. The metA and lysA genes were deleted to make more precursors available for Thr biosynthesis. Further target genes to be engineered were identified by transcriptome profiling combined with in silico flux response analysis, and their expression levels were manipulated accordingly. The final engineered E. coli strain was able to produce Thr with a high yield of 0.393 g per gram of glucose, and 82.4 g/l Thr by fed-batch culture. The systems metabolic engineering strategy reported here may be broadly employed for developing genetically defined organisms for the efficient production of various bioproducts.
Publisher
NATURE PUBLISHING GROUP
Issue Date
2007-12
Language
English
Article Type
Article
Citation

MOLECULAR SYSTEMS BIOLOGY, v.3, pp.1 - 8

ISSN
1744-4292
DOI
10.1038/msb4100196
URI
http://hdl.handle.net/10203/24551
Appears in Collection
CBE-Journal Papers(저널논문)
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