| Literature DB >> 16646962 |
Gregory J McKenzie1, Nancy L Craig.
Abstract
BACKGROUND: Inserting transgenes into bacterial chromosomes is generally quite involved, requiring a selection for cells carrying the insertion, usually for drug-resistance, or multiple cumbersome manipulations, or both. Several approaches use phage lambda red recombination, which allows for the possibility of mutagenesis of the transgene during a PCR step.Entities:
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Year: 2006 PMID: 16646962 PMCID: PMC1475584 DOI: 10.1186/1471-2180-6-39
Source DB: PubMed Journal: BMC Microbiol ISSN: 1471-2180 Impact factor: 3.605
Figure 1Transposition vector. The vector pGRG25 contains a multiple cloning site (MCS) with unique restriction sites for AvrII, NotI, PacI, and XhoI, flanked by the terminal repeats of Tn7. Cloning of the gene of interest into these sites, in between the Tn7 arms, will result in a plasmid that can be used to insert the transgene into the chromosome. araC is the regulator of the arabinose-inducible promoter PBAD (though in all experiments presented, leaky expression was sufficient). tnsABCD are the genes required for transposition of Tn7. rrnD is the transcription terminator. bla encodes β-lactamase which allows selection of ampicillin resistance when transforming the plasmid into bacteria. oriT is the RP4 conjugal transfer origin. pSC101 ori ts is the temperature sensitive origin of replication which functions at 32°C, but not at 42°C. Vector pGRG36 is identical except for the addition of a SmaI site to the MCS. The sequence of pGRG25 and pGRG36 can be accessed at GenBank (accession # DQ460223).
Figure 2Protocol for use of transgene insertion plasmid. 1) Transform the plasmid into the strain of choice and select transformants on LB + ampicillin at 32°C. Introduction of the plasmid by conjugation is also an option. 2) Streak once to ensure that the cells are carrying the plasmid, then grow non-selectively in LB at 32°C. In all strains tested thus far, leaky expression of TnsABCD during this step has been sufficient to allow site-specific transposition into the attTn7, but 0.1% arabinose may be added to increase levels of expression of TnsABCD. 3) Plate cells at 42°C to block replication of the plasmid. 4) Streak once at 42°C to ensure loss of the plasmid, then verify insertions in the attachment site by PCR.
Frequency of transgene insertion at E. coli attTn7 in the absence of selection. For each experiment shown three independent electrotransformations of pGRG25, which carries the multiple cloning site as the transgene, into strain MG1655 were performed. One single colony from each transformation was streaked out once at 32°C on LB with ampicillin, and then a culture of each colony was grown overnight in LB at 32°C. Appropriate dilutions were then plated on LB at 42°C. Ten colonies from each culture were examined by PCR to determine if they carried an insertion at the attachment site. The values shown are the average frequency from 3 cultures with 10 colonies examined per culture (i.e., a total of 30 colonies examined per experiment). The final value shows a mean average of all 6 experiments and the standard error of the mean (SEM).
| Experiment | Frequency of colonies carrying Tn |
| 1 | 0.83 |
| 2 | 0.70 |
| 3 | 0.63 |
| 4 | 0.70 |
| 5 | 0.90 |
| 6 | 0.97 |
| Average ± SEM | 0.79 ± 0.05 |
Frequency of transgene insertion into sites other than attTn7. For each experiment shown, three independent electrotransformations of pGRG19 (carrying a ChlR transgene) into MG1655 and MG1655 attTn7::Tn7kan were done. The presence of the Tn7 at attTn7 prevents insertion events there and allows measurement of the frequency at which Tn7 can transpose to other sites as discussed in the text [13]. One single colony from each transformation was streaked out once at 32°C on LB with ampicillin. From this, a culture was grown overnight in LB at 32°C, and appropriate dilutions were plated at 42°C on LB and LB with chloramphenicol. Values shown are the frequency of ChlR
| Strain | Experiment | Frequency of ChlR cells | Average ± SEM |
| 1 | 7.0 × 10-1 | ||
| MG1655 | 2 | 7.2 × 10-1 | (7.9 ± 0.8) × 10-1 |
| 3 | 9.4 × 10-1 | ||
| 1 | 6.8 × 10-5 | ||
| MG1655 | 2 | 4.6 × 10-5 | (5.5 ± 0.7) × 10-5 |
| 3 | 5.2 × 10-5 | ||