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Structures of ferroportin in complex with its specific inhibitor vamifeport

Elena F. Lehmann, Márton Liziczai, View ORCID ProfileKatarzyna Drożdżyk, Patrick Altermatt, Vania Manolova, Hanna Sundstrom, Franz Dürrenberger, View ORCID ProfileRaimund Dutzler, View ORCID ProfileCristina Manatschal
doi: https://doi.org/10.1101/2022.08.29.505642
Elena F. Lehmann
1Department of Biochemistry, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland
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Márton Liziczai
1Department of Biochemistry, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland
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Katarzyna Drożdżyk
1Department of Biochemistry, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland
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  • ORCID record for Katarzyna Drożdżyk
Patrick Altermatt
2CSL Vifor, Rechenstrasse 37, 9014 St. Gallen, Switzerland
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Vania Manolova
2CSL Vifor, Rechenstrasse 37, 9014 St. Gallen, Switzerland
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Hanna Sundstrom
2CSL Vifor, Rechenstrasse 37, 9014 St. Gallen, Switzerland
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Franz Dürrenberger
2CSL Vifor, Rechenstrasse 37, 9014 St. Gallen, Switzerland
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Raimund Dutzler
1Department of Biochemistry, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland
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  • For correspondence: [email protected] [email protected]
Cristina Manatschal
1Department of Biochemistry, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland
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  • ORCID record for Cristina Manatschal
  • For correspondence: [email protected] [email protected]
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Abstract

A central regulatory mechanism of iron homeostasis in humans involves ferroportin (FPN), the sole cellular iron exporter, and the peptide hormone hepcidin, which inhibits Fe2+ transport and induces internalization and degradation of FPN. Dysregulation of the FPN/hepcidin axis leads to diverse pathological conditions, and consequently, pharmacological compounds that inhibit FPN-mediated iron transport are of high clinical interest. Here, we describe the cryo-EM structures of human FPN in complex with synthetic nanobodies and vamifeport (VIT-2763), the first clinical-stage oral FPN inhibitor. Vamifeport competes with hepcidin for FPN binding and is currently in clinical development for β-thalassemia and sickle cell disease. The structures display two distinct conformations of FPN, representing outward-facing and an occluded states of the transporter. The vamifeport site is located in the center of the protein, where the overlap with hepcidin interactions underlies the competitive relationship between the two molecules. The introduction of point mutations in the binding pocket of vamifeport reduces its affinity to FPN, emphasizing the relevance of the structural data. Together, our study reveals the conformational rearrangements of FPN on its transport cycle and it provides initial insight into the pharmacological targeting of this unique iron efflux transporter.

Competing Interest Statement

P.A., V.M., H.S., and F.D. are employees of CSL Vifor and may own equities. P.A., V.M., and F.D. are inventors in patents related to the publication.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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Posted August 29, 2022.
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Structures of ferroportin in complex with its specific inhibitor vamifeport
Elena F. Lehmann, Márton Liziczai, Katarzyna Drożdżyk, Patrick Altermatt, Vania Manolova, Hanna Sundstrom, Franz Dürrenberger, Raimund Dutzler, Cristina Manatschal
bioRxiv 2022.08.29.505642; doi: https://doi.org/10.1101/2022.08.29.505642
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Structures of ferroportin in complex with its specific inhibitor vamifeport
Elena F. Lehmann, Márton Liziczai, Katarzyna Drożdżyk, Patrick Altermatt, Vania Manolova, Hanna Sundstrom, Franz Dürrenberger, Raimund Dutzler, Cristina Manatschal
bioRxiv 2022.08.29.505642; doi: https://doi.org/10.1101/2022.08.29.505642

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