Team:Paris Liliane Bettencourt/Project/Memo-cell/Results
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Revision as of 03:49, 28 October 2010
Recombination assay of HK022 and Lambda mutated recombination-sites.
In our project, we mutated the recombination sites of Phage Lambda and Phage HK022.
We had to assay their recombination efficiency compared to the wild-type sites.
We also mutated the arms of the transposon Tn916. The excision efficiency of the mutated transposon compared to the wild-type transposon were also assessed.
To assess the recombination efficiency of our mutated phage recombination sites, we cloned these sites within a pir dependent plasmid (R6K ori), that could only be replicate in pir strains. These plasmids also carried the Chloramphenicol and Kanamycin resistance cassettes.
Integration assessment
We transformed a pir- strain expressing the Integrase under the control of a pBAD promoter (using our biobricks K329028 pBAD_IntHK, K329027 pBAD_IntLambda) with the corresponding plasmid carrying either the wild-type or the mutated attP site, and plated the bacteria on LB plates with and without the selective antibiotics.
=> No real defect in the integration of the plasmids carrying the mutated attP sites for both HK022 and Lambda systems!
Excision assessment
We took the clones that had integrated the plasmids carrying the resistance cassettes, and checked by sequencing the recombination sites that had been reformed following the integration (attL and attR).
We have then transformed these positive clones with a plasmid carrying the corresponding phages enzymes that mediates excision of the phage from the bacterial chromosome: Xis and Int HK022 or Lambda.
We then plated the transformants on LB without any selection marker. We replicated the plates on a plate with no antibiotics and with antibiotics (CmR and Kana). Bacteria that have excised the plasmid should not be able to grow on the medium with antibiotics.
=> Mutated phage recombination site also mediated a strong excision, even if it was lower than the wild-type ones. This might be due to the mutation in the Xis binding sites, which have been showed to affect the excision efficiency.
Test of the excision by Tn916
To determine the efficiency of excision with the different arms we decided to
use a Kan LacZ counter selection system (see design section : mutated Tn916). We took a culture of cells where one of
the third transposon (Wild Type, HK, Lambda) had been integrated via recombination of attP and
attB site (integrase Lambda). This cells have been transformed with a plasmid
carrying both the Tn916 Int and Xis genes. These genes are under the control of the inducible
Pbad promoter. We then diluted an overnigth culture and subsequently induced at
the beginning of exponential phase (O.D 0.2) with Arabinose at final
concentration of 0.2%. Following the induction, we took one sample of each culture every 2 hours and
put them in 2% of glucose to inhibit the Pbad promoter for 1 hour at 37°C. Hence, we acheived the dilution of the transposase enzyme. The aim of this experimental step is to decrease the probability to have an event of excision between sampling and plating.
To permit counting of colonies several dilutions where plated on glucose
1% and then replicated on a plate with Kanamycine. Colonies which have excised will
grow on glucose but not on Kanamycine. The excision efficiency correspond to 1-(unexcised
CFU/Total CFU).
Errors bars indicate the standard deviation from two independent trials.
To check the excision, we have done colony PCR for several clones of each transposon version with primers matching in both site of the attB site.
We can see that for this clones, there is a band around 2800 bp which correspond to the plasmid integrated (5000 bp) without the transposon (2200 bp).