4.7 Article

An engineered Calvin-Benson-Bassham cycle for carbon dioxide fixation in Methylobacterium extorquens AM1

期刊

METABOLIC ENGINEERING
卷 47, 期 -, 页码 423-433

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ymben.2018.04.003

关键词

Calvin-Benson-Bassham cycle; Carbon fixation; Methylobacterium extorquens AM1; RuBisCO; Methylotrophy; Autotrophy

资金

  1. ETH Zurich [ETH-41/12-2]
  2. IMPRS
  3. Max Planck Society

向作者/读者索取更多资源

Organisms are either heterotrophic or autotrophic, meaning that they cover their carbon requirements by assimilating organic compounds or by fixing inorganic carbon dioxide (CO2). The conversion of a heterotrophic organism into an autotrophic one by metabolic engineering is a long-standing goal in synthetic biology and biotechnology, because it ultimately allows for the production of value-added compounds from CO2 . The heterotrophic Alphaproteobacterium Methylobacterium extorquens AM1 is a platform organism for a future Cl-based bioeconomy. Here we show that M. extorquens AM1 provides unique advantages for establishing synthetic autotrophy, because energy metabolism and biomass formation can be effectively separated from each other in the organism. We designed and realized an engineered strain of M. extorquens AM1 that can use the Cl compound methanol for energy acquisition and forms biomass from CO2 by implementation of a heterologous CalvinBenson-Bassham (CBB) cycle. We demonstrate that the heterologous CBB cycle is active, confers a distinct phenotype, and strongly increases viability of the engineered strain. Metabolic C-13-tracer analysis demonstrates the functional operation of the heterologous CBB cycle in M. extorquens AM1 and comparative proteomics of the engineered strain show that the host cell reacts to the implementation of the CBB cycle in a plastic way. While the heterologous CBB cycle is not able to support full autotrophic growth of M. extorquens AM1, our study represents a further advancement in the design and realization of synthetic autotrophic organisms.

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