Affiliation:
1. Cobra Biomanufacturing Plc, The Science Park, Keele, Staffordshire ST5 5SP, United Kingdom
Abstract
ABSTRACT
A simple, effective method of unlabeled, stable gene insertion into bacterial chromosomes has been developed. This utilizes an insertion cassette consisting of an antibiotic resistance gene flanked by
dif
sites and regions homologous to the chromosomal target locus.
dif
is the recognition sequence for the native Xer site-specific recombinases responsible for chromosome and plasmid dimer resolution: XerC/XerD in
Escherichia coli
and RipX/CodV in
Bacillus subtilis
. Following integration of the insertion cassette into the chromosomal target locus by homologous recombination, these recombinases act to resolve the two directly repeated
dif
sites to a single site, thus excising the antibiotic resistance gene. Previous approaches have required the inclusion of exogenous site-specific recombinases or transposases in
trans
; our strategy demonstrates that this is unnecessary, since an effective recombination system is already present in bacteria. The high recombination frequency makes the inclusion of a counter-selectable marker gene unnecessary.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Reference30 articles.
1. Barre, F.-X., M. Aroyo, S. D. Colloms, A. Helfrich, F. Cornet, and D. J. Sherratt. 2000. FtsK functions in the processing of a Holliday junction intermediate during bacterial chromosome segregation. Genes Dev.14:2976-2988.
2. Blakely, G. W., and D. J. Sherratt. 1994. Interactions of the site-specific recombinases XerC and XerD with the recombination site dif. Nucleic Acids Res.22:5613-5620.
3. Chalker, A. F., A. Lupas, K. Ingraham, C. Y. So, R. D. Lunsford, T. Li, A. Bryant, D. J. Holmes, A. Marra, S. C. Pearson, J. Ray, M. K. Burnham, L. M. Palmer, S. Biswas, and M. Zalacain. 2000. Genetic characterisation of Gram-positive homologs of the XerCD site-specific recombinases. J. Mol. Biotechnol.2:225-233.
4. Cooke, G. D., R. M. Cranenburgh, J. A. J. Hanak, P. Dunnill, D. R. Thatcher, and J. M. Ward. 2001. Purification of essentially RNA free plasmid DNA using a modified Escherichia coli host strain expressing ribonuclease A. J. Biotechnol.85:297-304.
5. Plasmid pSC101 harbors a recombination site, psi, which is able to resolve plasmid multimers and to substitute for the analogous chromosomal Escherichia coli site dif
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