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The mycobacterial ABC transporter IrtAB employs a membrane-facing crevice for siderophore-mediated iron uptake

Author

Listed:
  • Imre Gonda

    (University of Zurich)

  • Simona Sorrentino

    (University of Zurich)

  • Laura Galazzo

    (University of Geneva)

  • Nicolas P. Lichti

    (University of Zurich)

  • Fabian M. Arnold

    (University of Zurich)

  • Ahmad R. Mehdipour

    (Ghent University)

  • Enrica Bordignon

    (University of Geneva)

  • Markus A. Seeger

    (University of Zurich
    University of Zurich)

Abstract

The mycobacterial ABC transporter IrtAB features an ABC exporter fold, yet it imports iron-charged siderophores called mycobactins. Here, we present extensive cryo-EM analyses and DEER measurements, revealing that IrtAB alternates between an inward-facing and an outward-occluded conformation, but does not sample an outward-facing conformation. When IrtAB is locked in its outward-occluded conformation in nanodiscs, mycobactin is bound in the middle of the lipid bilayer at a membrane-facing crevice opening at the heterodimeric interface. Mutations introduced at the crevice abrogate mycobactin import and in corresponding structures, the crevice is collapsed. A conserved triple histidine motif coordinating a zinc ion is present below the mycobactin binding site. Substitution of these histidine residues with alanine results in a decoupled transporter, which hydrolyzes ATP, but lost its capacity to import mycobactins. Our data suggest that IrtAB imports mycobactin via a credit-card mechanism in a transport cycle that is coupled to the presence of zinc.

Suggested Citation

  • Imre Gonda & Simona Sorrentino & Laura Galazzo & Nicolas P. Lichti & Fabian M. Arnold & Ahmad R. Mehdipour & Enrica Bordignon & Markus A. Seeger, 2025. "The mycobacterial ABC transporter IrtAB employs a membrane-facing crevice for siderophore-mediated iron uptake," Nature Communications, Nature, vol. 16(1), pages 1-17, December.
  • Handle: RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-024-55136-7
    DOI: 10.1038/s41467-024-55136-7
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