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Functional reconstitution of a bacterial CO2concentrating mechanism inE. coli

bioRxiv (Cold Spring Harbor Laboratory)(2020)

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Abstract
AbstractMany photosynthetic organisms employ a CO2concentrating mechanism (CCM) to increase the rate of CO2fixation via the Calvin cycle. CCMs catalyze ≈50% of global photosynthesis, yet it remains unclear which genes and proteins are required to produce this complex adaptation. We describe the construction of a functional CCM in a non-native host, achieved by expressing genes from an autotrophic bacterium in an engineeredE. colistrain. Expression of 20 CCM genes enabledE. colito grow by fixing CO2from ambient air into biomass, with growth depending on CCM components. Bacterial CCMs are therefore genetically compact and readily transplanted, rationalizing their presence in diverse bacteria. Reconstitution enabled genetic experiments refining our understanding of the CCM, thereby laying the groundwork for deeper study and engineering of the cell biology supporting CO2assimilation in diverse organisms.One Sentence SummaryA bacterial CO2concentrating mechanism enablesE. colito fix CO2from ambient air.
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Key words
bacterial co2concentrating mechanism,functional reconstitution
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