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Updated: Jul 3, 2026

FLIM-FRET Measurements of Protein-Protein Interactions in Live Bacteria.
Published on: August 25, 2020
The metal dependence of pyoverdine interactions with its outer membrane receptor FpvA
Jason Greenwald1, Gabrielle Zeder-Lutz, Agnès Hagege
1Département Récepteurs et Protéines Membranaires, Institut Gilbert-Laustriat, UMR 7175-LC1 CNRS, ESBS, Blvd. Sébastien Brant, F-67413 Illkirch, Strasbourg, France. jason.greenwald@phys.chem.ethz.ch
Abstract:
To acquire iron, Pseudomonas aeruginosa secretes the fluorescent siderophore pyoverdine (Pvd), which chelates iron and shuttles it into the cells via the specific outer membrane transporter FpvA. We studied the role of iron and other metals in the binding and transport of Pvd by FpvA and conclude that there is no significant affinity between FpvA and metal-free Pvd. We found that the fluorescent in vivo complex of iron-free FpvA-Pvd is in fact a complex with aluminum (FpvA-Pvd-Al) formed from trace aluminum in the growth medium. When Pseudomonas aeruginosa was cultured in a medium that had been treated with a metal affinity resin, the in vivo formation of the FpvA-Pvd complex and the recycling of Pvd on FpvA were nearly abolished. The accumulation of Pvd in the periplasm of Pseudomonas aeruginosa was also reduced in the treated growth medium, while the addition of 1 microM AlCl(3) to the treated medium restored the effects of trace metals observed in standard growth medium. Using fluorescent resonance energy transfer and surface plasmon resonance techniques, the in vitro interactions between Pvd and detergent-solubilized FpvA were also shown to be metal dependent. We demonstrated that FpvA binds Pvd-Fe but not Pvd and that Pvd did not compete with Pvd-Fe for FpvA binding. In light of our finding that the Pvd-Al complex is transported across the outer membrane of Pseudomonas aeruginosa, a model for siderophore recognition based on a metal-induced conformation followed by redox selectivity for iron is discussed.
Insights
Pseudomonas aeruginosa uses aluminum, not iron, to bind the siderophore pyoverdine (Pvd) to its transporter FpvA. This metal-induced binding is crucial for Pvd uptake and iron acquisition by the bacteria.
Area of Science:
- Microbiology
- Biochemistry
- Molecular Biology
Background:
- Pseudomonas aeruginosa requires iron for growth and utilizes the siderophore pyoverdine (Pvd) for iron acquisition.
- Pvd chelates iron and is transported into the cell via the outer membrane transporter FpvA.
Purpose of the Study:
- To investigate the role of iron and other metals in the binding and transport of Pvd by FpvA.
- To elucidate the mechanism of Pvd recognition and transport by Pseudomonas aeruginosa.
Main Methods:
- Metal affinity chromatography to remove trace metals from growth media.
- Fluorescent resonance energy transfer (FRET) and surface plasmon resonance (SPR) to study in vitro interactions.
- Culturing Pseudomonas aeruginosa in standard and metal-depleted media with and without aluminum supplementation.
Main Results:
- FpvA shows no significant affinity for metal-free Pvd; binding is metal-dependent.
- The in vivo FpvA-Pvd complex is formed with aluminum (FpvA-Pvd-Al), not iron.
- Metal depletion abolishes Pvd complex formation and periplasmic accumulation, which is restored by aluminum addition.
Conclusions:
- The Pvd-Al complex, not Pvd-Fe, is transported by FpvA in Pseudomonas aeruginosa.
- Siderophore recognition involves metal-induced conformational changes in FpvA, followed by iron selectivity.
- This finding redefines the model for siderophore-mediated metal uptake in bacteria.

