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Engineering carbon fixation in E. coil: from heterologous RuBisCO expression to the Calvin-Benson-Bassham cycle

Journal

CURRENT OPINION IN BIOTECHNOLOGY
Volume 47, Issue -, Pages 83-91

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.copbio.2017.06.006

Keywords

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Funding

  1. European Research Council [NOVCARBFIX 646827]
  2. Israel Science Foundation [740/16]
  3. NIH [1R35 GM118043-01]

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Carbon fixation is the gateway of inorganic carbon into the biosphere. Our ability to engineer carbon fixation pathways in living organisms is expected to play a crucial role in the quest towards agricultural and energetic sustainability. Recent successes to introduce non-native carbon fixation pathways into heterotrophic hosts offer novel platforms for manipulating these pathways in genetically malleable organisms. Here, we focus on past efforts and future directions for engineering the dominant carbon fixation pathway in the biosphere, the Calvin-Benson cycle, into the well-known model organism Escherichia coil. We describe how central carbon metabolism of this heterotrophic bacterium can be manipulated to allow directed evolution of carbon fixing enzymes. Finally, we highlight future directions towards synthetic autotrophy.

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