The Pseudomonas aeruginosa pirA gene encodes a second receptor for ferrienterobactin and synthetic catecholate

Bart Ghysels1, Urs Ochsner, Ute Möllman

  • 1Department of Molecular and Cellular Interactions, Laboratory of Microbial Interactions, Flanders Interuniversity Institute of Biotechnology (VIB6), Vrije Universiteit Brussel, Brussels, Belgium.

Insights

Pseudomonas aeruginosa utilizes various siderophores for iron uptake via specific receptors. Researchers identified redundancy in enterobactin receptors, suggesting a broader mechanism for siderophore acquisition in this bacterium.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Biochemistry

Background:

  • Siderophores are crucial for iron acquisition in fluorescent pseudomonads like Pseudomonas aeruginosa, impacting virulence and environmental adaptation.
  • Iron-siderophore complexes are actively transported into the bacterial cell via outer membrane receptors dependent on the TonB-ExbB-ExbC complex.

Purpose of the Study:

  • To characterize the function of numerous putative siderophore receptor genes in P. aeruginosa PAO1.
  • To investigate the uptake mechanisms of synthetic catecholate siderophores and identify cognate receptors.
  • To explore potential redundancy in siderophore receptor systems within P. aeruginosa.

Main Methods:

  • Growth stimulation assays using a pyoverdine/pyochelin deficient P. aeruginosa PAO1 mutant with synthetic iron chelators.
  • Construction and screening of null mutants for 32 putative TonB-dependent siderophore receptor genes.
  • Analysis of ferric-enterobactin and synthetic enterobactin analogues uptake using single and double receptor mutants (pfeA and pirA).

Main Results:

  • Ten synthetic catecholate siderophores stimulated growth of the P. aeruginosa mutant under iron limitation.
  • None of the single receptor knock-out mutants showed significant deficiencies in synthetic siderophore uptake.
  • A double mutant lacking pfeA and pirA failed to utilize ferric-enterobactin and four synthetic enterobactin-like siderophores, confirming pirA as a second enterobactin receptor.

Conclusions:

  • P. aeruginosa possesses a broad capacity for utilizing diverse siderophores, with extensive redundancy in its receptor systems.
  • The identification of a second ferric-enterobactin receptor (pirA) highlights the complex and potentially redundant nature of siderophore-mediated iron uptake in P. aeruginosa.
  • Further characterization of P. aeruginosa siderophore receptors is needed to fully understand iron acquisition strategies.

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