Authors
Da-Eun Jeong, Seung-Hwan Park, Jae-Gu Pan, Eui-Joong Kim, Soo-Keun Choi
Publication date
2015/3/31
Journal
Nucleic acids research
Volume
43
Issue
6
Pages
e42-e42
Publisher
Oxford University Press
Description
Genome engineering without leaving foreign DNA behind requires an efficient counter-selectable marker system. Here, we developed a genome engineering method in Bacillus subtilis using a synthetic gene circuit as a counter-selectable marker system. The system contained two repressible promoters (B. subtilis xylA (Pxyl) and spac (Pspac)) and two repressor genes (lacI and xylR). Pxyl-lacI was integrated into the B. subtilis genome with a target gene containing a desired mutation. The xylR and Pspac–chloramphenicol resistant genes (cat) were located on a helper plasmid. In the presence of xylose, repression of XylR by xylose induced LacI expression, the LacIs repressed the Pspac promoter and the cells become chloramphenicol sensitive. Thus, to survive in the presence of chloramphenicol, the cell must delete Pxyl-lacI by recombination between the wild-type and mutated target genes. The …
Total citations
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Scholar articles
DE Jeong, SH Park, JG Pan, EJ Kim, SK Choi - Nucleic acids research, 2015