Implementation of a reductive route of one-carbon assimilation in Escherichia coli through directed evolution.

ACS synthetic biology(2018)

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摘要
Endowing biotechnological platform organisms with new carbon assimilation pathways is a key challenge for industrial biotechnology. Here we report progress towards the construction of formatotrophic Escherichia coli strains. Glycine and serine, universal precursors of one-carbon compounds oxidized during heterotrophic growth, are produced from formate and CO2 through a reductive route. An adaptive evolution strategy was applied to optimize the enzymatic steps of this route in appropriate selection strains. Metabolic labeling experiments with 13C-formate confirm the redirected carbon-flow. These results demonstrate the high plasticity of the central carbon metabolism of E. coli and the applicative potential of directed evolution for implementing synthetic pathways in microorganisms.
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关键词
formate assimilation,one-carbon metabolism,glycine cleavage complex,directed evolution,long-term continuous culture,synthetic metabolism
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