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Exploiting Day- and Night-Time Metabolism of Synechocystis sp. PCC 6803 for Fitness-Coupled Fumarate Production around the Clock.
Du, Wei; Jongbloets, Joeri A; Guillaume, Max; van de Putte, Bram; Battaglino, Beatrice; Hellingwerf, Klaas J; Branco Dos Santos, Filipe.
Affiliation
  • Du W; Molecular Microbial Physiology Group, Faculty of Life Sciences, Swammerdam Institute of Life Sciences , University of Amsterdam , Science Park 904 , 1098 XH Amsterdam , The Netherlands.
  • Jongbloets JA; Molecular Microbial Physiology Group, Faculty of Life Sciences, Swammerdam Institute of Life Sciences , University of Amsterdam , Science Park 904 , 1098 XH Amsterdam , The Netherlands.
  • Guillaume M; Molecular Microbial Physiology Group, Faculty of Life Sciences, Swammerdam Institute of Life Sciences , University of Amsterdam , Science Park 904 , 1098 XH Amsterdam , The Netherlands.
  • van de Putte B; Molecular Microbial Physiology Group, Faculty of Life Sciences, Swammerdam Institute of Life Sciences , University of Amsterdam , Science Park 904 , 1098 XH Amsterdam , The Netherlands.
  • Battaglino B; Applied Science and Technology Department , Politecnico di Torino , Corso Duca degli Abruzzi 24 , 10129 Torino , Italy.
  • Hellingwerf KJ; Centre for Sustainable Future Technologies , Istituto Italiano di Tecnologia , Environment Park, Via Livorno 60 , 10144 Torino , Italy.
  • Branco Dos Santos F; Molecular Microbial Physiology Group, Faculty of Life Sciences, Swammerdam Institute of Life Sciences , University of Amsterdam , Science Park 904 , 1098 XH Amsterdam , The Netherlands.
ACS Synth Biol ; 8(10): 2263-2269, 2019 10 18.
Article in En | MEDLINE | ID: mdl-31553573
ABSTRACT
Cyanobacterial cell factories are widely researched for the sustainable production of compounds directly from CO2. Their application, however, has been limited for two reasons. First, traditional approaches have been shown to lead to unstable cell factories that lose their production capability when scaled to industrial levels. Second, the alternative approaches developed so far are mostly limited to growing conditions, which are not always the case in industry, where nongrowth periods tend to occur (e.g., darkness). We tackled both by generalizing the concept of growth-coupled production to fitness coupling. The feasibility of this new approach is demonstrated for the production of fumarate by constructing the first stable dual-strategy cell factory. We exploited circadian metabolism using both systems and synthetic biology tools, resulting in the obligatorily coupling of fumarate to either biomass or energy production. Resorting to laboratory evolution experiments, we show that this engineering approach is more stable than conventional methods.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Synechocystis / Circadian Clocks / Fumarates Language: En Journal: ACS Synth Biol Year: 2019 Document type: Article Affiliation country: Netherlands

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Synechocystis / Circadian Clocks / Fumarates Language: En Journal: ACS Synth Biol Year: 2019 Document type: Article Affiliation country: Netherlands