Metabolic Recruitment and Directed Evolution of Nucleoside Triphosphate Uptake in Escherichia coli.

Valérie Pezo, Camille Hassan, Dominique Louis, Bruno Sargueil, Piet Herdewijn, Philippe Marlière

Journal: ACS synthetic biology 2019;7(6):1565-1572

PMID: 29746092

Abstract

We report the design and elaboration of a selection protocol for importing a canonical substrate of DNA polymerase, thymidine triphosphate (dTTP) in Escherichia coli. Bacterial strains whose growth depend on dTTP uptake, through the action of an algal plastid transporter expressed from a synthetic gene inserted in the chromosome, were constructed and shown to withstand the simultaneous loss of thymidylate synthase and thymidine kinase. Such thyA tdk dual deletant strains provide an experimental model of tight nutritional containment for preventing dissemination of microbial GMOs. Our strains transported the four canonical dNTPs, in the following order of preference: dCTP > dATP ≥ dGTP > dTTP. Prolonged cultivation under limitation of exogenous dTTP led to the enhancement of dNTP transport by adaptive evolution. We investigated the uptake of dCTP analogues with altered sugar or nucleobase moieties, which were found to cause a loss of cell viability and an increase of mutant frequency, respectively. E. coli strains equipped with nucleoside triphosphate transporters should be instrumental for evolving organisms whose DNA genome is morphed chemically by fully substituting its canonical nucleotide components.

Address: Génomique Métabolique, Genoscope, Institut François Jacob, CEA, CNRS , Univ Evry, Université Paris-Saclay , 91057 Evry , France.; ISSB , Génopole, 5 rue Henri Desbruères , 91000 Evry , France.; Isthmus , 81 rue Réaumur , 75002 Paris , France.; Alderys , 86 rue de Paris , 91400 Orsay , France.; CNRS UMR 8015, Laboratoire de Cristallographie et RMN Biologiques , Université Paris Descartes , 4 avenue de l'Observatoire , 75006 Paris , France.; TESSSI , 81 rue Réaumur , 75002 Paris , France.

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