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Author Spotlight: Quantifying Siderophores and Pyochelin for Infection Control
Published on: March 15, 2024
Interactions between an anti-sigma protein and two sigma factors that regulate the pyoverdine signaling pathway in
Rebecca J Edgar1,2, Xin Xu3, Matt Shirley4
1Department of Biochemistry, University of Otago, PO Box 56, Dunedin, New Zealand. edgre961@student.otago.ac.nz.
Background:
Synthesis and uptake of pyoverdine, the primary siderophore of the opportunistic pathogen Pseudomonas aeruginosa, is dependent on two extra-cytoplasmic function (ECF) sigma factors, FpvI and PvdS. FpvI and PvdS are required for expression of the ferri-pyoverdine receptor gene fpvA and of pyoverdine synthesis genes respectively. In the absence of pyoverdine the anti-sigma factor FpvR that spans the cytoplasmic membrane inhibits the activities of both FpvI and PvdS, despite the two sigma factors having low sequence identity.
Results:
To investigate the interactions of FpvR with FpvI and PvdS, we first used a tandem affinity purification system to demonstrate binding of PvdS by the cytoplasmic region of FpvR in P. aeruginosa at physiological levels. The cytoplasmic region of FpvR bound to and inhibited both FpvI and PvdS when the proteins were co-expressed in Escherichia coli. Each sigma factor was then subjected to error prone PCR and site-directed mutagenesis to identify mutations that increased sigma factor activity in the presence of FpvR. In FpvI, the amino acid changes clustered around conserved region four of the protein and are likely to disrupt interactions with FpvR. Deletion of five amino acids from the C-terminal end of FpvI also disrupted interactions with FpvR. Mutations in PvdS were present in conserved regions two and four. Most of these mutations as well as deletion of thirteen amino acids from the C-terminal end of PvdS increased sigma factor activity independent of whether FpvR was present, suggesting that they increase either the stability of PvdS or its affinity for core RNA polymerase.
Conclusions:
These data show that FpvR binds to PvdS in both P. aeruginosa and E. coli, inhibiting its activity. FpvR also binds to and inhibits FpvI and binding of FpvI is likely to involve conserved region four of the sigma factor protein.
Insights
The anti-sigma factor FpvR inhibits Pseudomonas aeruginosa pyoverdine synthesis by binding to sigma factors FpvI and PvdS. Mutations disrupting FpvR interaction increase sigma factor activity, revealing key binding regions.
Area of Science:
- Microbiology
- Molecular Biology
- Bacterial Pathogenesis
Background:
- Pyoverdine, a siderophore produced by Pseudomonas aeruginosa, is crucial for iron acquisition and bacterial virulence.
- Two ECF sigma factors, FpvI and PvdS, regulate pyoverdine synthesis and receptor gene expression.
- The anti-sigma factor FpvR inhibits FpvI and PvdS activity in the absence of pyoverdine.
Purpose of the Study:
- To investigate the interaction mechanisms between FpvR and the sigma factors FpvI and PvdS.
- To identify specific regions and mutations in FpvI and PvdS that affect FpvR binding and inhibition.
Main Methods:
- Tandem affinity purification to detect FpvR binding to PvdS in P. aeruginosa.
- Co-expression of FpvR with FpvI and PvdS in E. coli to assess inhibition.
- Error-prone PCR and site-directed mutagenesis to identify mutations affecting sigma factor activity.
Main Results:
- FpvR directly binds and inhibits the cytoplasmic region of PvdS in P. aeruginosa and E. coli.
- FpvR also binds and inhibits FpvI, with interactions likely involving conserved region four.
- Mutations in FpvI (conserved region four, C-terminus) and PvdS (conserved regions two and four, C-terminus) reduced FpvR inhibition.
Conclusions:
- FpvR effectively inhibits both PvdS and FpvI through direct binding.
- Conserved region four of FpvI is critical for FpvR interaction.
- Mutations enhancing sigma factor activity suggest disruption of FpvR binding or increased core RNA polymerase affinity.
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