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Author Spotlight: Quantifying Siderophores and Pyochelin for Infection Control
Published on: March 15, 2024
Pore-forming pyocin S5 utilizes the FptA ferripyochelin receptor to kill Pseudomonas aeruginosa
Ameer Elfarash1,2, Jozef Dingemans2, Lumeng Ye2
1Department of Genetics, Faculty of Agriculture, Assiut University, Assiut, Egypt.
Abstract:
Pyocins are toxic proteins produced by some strains of Pseudomonas aeruginosa that are lethal for related strains of the same species. Some soluble pyocins (S2, S3 and S4) were previously shown to use the pyoverdine siderophore receptors to enter the cell. The P. aeruginosa PAO1 pore-forming pyocin S5 encoding gene (PAO985) was cloned into the expression vector pET15b, and the affinity-purified protein product tested for its killing activity against different P. aeruginosa strains. The results, however, did not show any correlation with a specific ferripyoverdine receptor. To further identify the S5 receptor, transposon mutants were generated. Pooled mutants were exposed to pyocin S5 and the resistant colonies growing in the killing zone were selected. The majority of S5-resistant mutants had an insertion in the fptA gene encoding the receptor for the siderophore pyochelin. Complementation of an fptA transposon mutant with the P. aeruginosa fptA gene in trans restored the sensitivity to S5. In order to define the receptor-binding domain of pyocin S5, two hybrid pyocins were constructed containing different regions from pyocin S5 fused to the C-terminal translocation and DNase killing domains of pyocin S2. Only the protein containing amino acid residues 151 to 300 from S5 showed toxicity, indicating that the pyocin S5 receptor-binding domain is not at the N-terminus of the protein as in other S-type pyocins. Pyocin S5 was, however, unable to kill Burkholderia cenocepacia strains producing a ferripyochelin FptA receptor, nor was the B. cenocepacia fptA gene able to restore the sensitivity of the resistant fptA mutant P. aeruginosa strain.
Insights
Pyocins are toxic proteins from Pseudomonas aeruginosa. Pyocin S5 uses the pyochelin receptor (FptA) for cell entry, unlike other pyocins that use pyoverdine receptors.
Area of Science:
- Microbiology
- Bacteriology
- Protein Biochemistry
Background:
- Pyocins are bacteriocins produced by Pseudomonas aeruginosa.
- Some pyocins utilize siderophore receptors for cellular uptake.
- The specific receptor for pyocin S5 remained unidentified.
Purpose of the Study:
- To identify the cellular receptor for pyocin S5.
- To determine the receptor-binding domain of pyocin S5.
- To investigate the mechanism of pyocin S5 entry into Pseudomonas aeruginosa.
Main Methods:
- Cloning and expression of pyocin S5 gene (PAO985).
- Generation and selection of pyocin S5-resistant transposon mutants.
- Complementation assays to confirm receptor identity.
- Construction of hybrid pyocins to map the receptor-binding domain.
Main Results:
- The majority of pyocin S5-resistant mutants had insertions in the fptA gene, encoding the pyochelin receptor.
- Complementation restored pyocin S5 sensitivity in fptA mutants.
- The receptor-binding domain of pyocin S5 was mapped to amino acid residues 151-300.
- Pyocin S5 did not kill Burkholderia cenocepacia strains expressing FptA.
Conclusions:
- Pyocin S5 utilizes the pyochelin receptor (FptA) for entry into Pseudomonas aeruginosa.
- The receptor-binding domain of pyocin S5 is located internally, distinct from other S-type pyocins.
- Species-specific differences in FptA may influence pyocin S5 activity.
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