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Enhancing multiplex genome editing by natural transformation (MuGENT) via inactivation of ssDNA exonucleases.


ABSTRACT: Recently, we described a method for multiplex genome editing by natural transformation (MuGENT). Mutant constructs for MuGENT require large arms of homology (>2000 bp) surrounding each genome edit, which necessitates laborious in vitro DNA splicing. In Vibrio cholerae, we uncover that this requirement is due to cytoplasmic ssDNA exonucleases, which inhibit natural transformation. In ssDNA exonuclease mutants, one arm of homology can be reduced to as little as 40 bp while still promoting integration of genome edits at rates of ∼50% without selection in cis. Consequently, editing constructs are generated in a single polymerase chain reaction where one homology arm is oligonucleotide encoded. To further enhance editing efficiencies, we also developed a strain for transient inactivation of the

SUBMITTER: Dalia TN 

PROVIDER: S-EPMC5499599 | biostudies-literature | 2017 Jul

REPOSITORIES: biostudies-literature

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