One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products
Одностадийная инактивaция хромосомных генов Escherichia coli K-12 с использованием PCR‑продуктов
2000-05-30
SCID: 54.1/5gcmgdj5
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Escherichia coli K-12FLP recombinaseFRT sitesPCR-generated gene disruptionlambda Red recombinase
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Abstract (AI)
We have developed a simple and highly efficient method to disrupt chromosomal genes in Escherichia coli in which PCR primers provide the homology to the targeted gene(s). In this procedure, recombination requires the phage lambda Red recombinase, which is synthesized under the control of an inducible promoter on an easily curable, low copy number plasmid. To demonstrate the utility of this approach, we generated PCR products by using primers with 36- to 50-nt extensions that are homologous to regions adjacent to the gene to be inactivated and template plasmids carrying antibiotic resistance genes that are flanked by FRT (FLP recognition target) sites. By using the respective PCR products, we made 13 different disruptions of chromosomal genes. Mutants of the arcB, cyaA, lacZYA, ompR-envZ, phnR, pstB, pstCA, pstS, pstSCAB-phoU, recA, and torSTRCAD genes or operons were isolated as antibiotic-resistant colonies after the introduction into bacteria carrying a Red expression plasmid of synthetic (PCR-generated) DNA. The resistance genes were then eliminated by using a helper plasmid encoding the FLP recombinase which is also easily curable. This procedure should be widely useful, especially in genome analysis of E. coli and other bacteria because the procedure can be done in wild-type cells.
Key Findings
1
A simple, highly efficient one-step method was developed to disrupt chromosomal genes in Escherichia coli using PCR primers that provide homology to target genes.
2
Inserted resistance cassettes can be removed by an easily curable helper plasmid expressing FLP recombinase, enabling clean deletions in wild-type cells.
3
PCR products were generated with 36–50 nt homology extensions and template plasmids carrying antibiotic resistance flanked by FRT sites to create gene disruptions.
4
Recombination depends on phage lambda Red recombinase expressed from an inducible, easily curable low-copy plasmid.
5
Thirteen different chromosomal gene or operon disruptions (including arcB, cyaA, lacZYA, ompR-envZ, phnR, pstB, pstCA, pstS, pstSCAB-phoU, recA, torSTRCAD) were obtained as antibiotic-resistant colonies using the method.
Research Object
Chromosomal genes in Escherichia coli K-12
Research Subject
One-step inactivation (disruption) of those chromosomal genes using PCR-generated DNA fragments mediated by phage lambda Red recombinase and FLP/FRT–flanked antibiotic cassettes
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2000-05-30
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