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Structure of hepcidin-bound ferroportin reveals iron homeostatic mechanisms

The serum iron level in humans is tightly controlled by the action of the hormone hepcidin on the iron efflux transporter ferroportin. Hepcidin regulates iron absorption and recycling by inducing ferroportin internalization and degradation(1). Aberrant ferroportin activity can lead to diseases of ir...

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Autores principales: Billesbølle, Christian B., Azumaya, Caleigh M., Kretsch, Rachael C., Powers, Alexander S., Gonen, Shane, Schneider, Simon, Arvedson, Tara, Dror, Ron O., Cheng, Yifan, Manglik, Aashish
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7906036/
https://www.ncbi.nlm.nih.gov/pubmed/32814342
http://dx.doi.org/10.1038/s41586-020-2668-z
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author Billesbølle, Christian B.
Azumaya, Caleigh M.
Kretsch, Rachael C.
Powers, Alexander S.
Gonen, Shane
Schneider, Simon
Arvedson, Tara
Dror, Ron O.
Cheng, Yifan
Manglik, Aashish
author_facet Billesbølle, Christian B.
Azumaya, Caleigh M.
Kretsch, Rachael C.
Powers, Alexander S.
Gonen, Shane
Schneider, Simon
Arvedson, Tara
Dror, Ron O.
Cheng, Yifan
Manglik, Aashish
author_sort Billesbølle, Christian B.
collection PubMed
description The serum iron level in humans is tightly controlled by the action of the hormone hepcidin on the iron efflux transporter ferroportin. Hepcidin regulates iron absorption and recycling by inducing ferroportin internalization and degradation(1). Aberrant ferroportin activity can lead to diseases of iron overload, like hemochromatosis, or iron limitation anemias(2). Here, we determined cryogenic electron microscopy (cryo-EM) structures of ferroportin in lipid nanodiscs, both in the apo state and in complex with cobalt, an iron mimetic, and hepcidin. These structures and accompanying molecular dynamics simulations identify two metal binding sites within the N- and C-domains of ferroportin. Hepcidin binds ferroportin in an outward-open conformation and completely occludes the iron efflux pathway to inhibit transport. The carboxy-terminus of hepcidin directly contacts the divalent metal in the ferroportin C-domain. We further show that hepcidin binding to ferroportin is coupled to iron binding, with an 80-fold increase in hepcidin affinity in the presence of iron. These results suggest a model for hepcidin regulation of ferroportin, where only iron loaded ferroportin molecules are targeted for degradation. More broadly, our structural and functional insights are likely to enable more targeted manipulation of the hepcidin-ferroportin axis in disorders of iron homeostasis.
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spelling pubmed-79060362021-02-25 Structure of hepcidin-bound ferroportin reveals iron homeostatic mechanisms Billesbølle, Christian B. Azumaya, Caleigh M. Kretsch, Rachael C. Powers, Alexander S. Gonen, Shane Schneider, Simon Arvedson, Tara Dror, Ron O. Cheng, Yifan Manglik, Aashish Nature Article The serum iron level in humans is tightly controlled by the action of the hormone hepcidin on the iron efflux transporter ferroportin. Hepcidin regulates iron absorption and recycling by inducing ferroportin internalization and degradation(1). Aberrant ferroportin activity can lead to diseases of iron overload, like hemochromatosis, or iron limitation anemias(2). Here, we determined cryogenic electron microscopy (cryo-EM) structures of ferroportin in lipid nanodiscs, both in the apo state and in complex with cobalt, an iron mimetic, and hepcidin. These structures and accompanying molecular dynamics simulations identify two metal binding sites within the N- and C-domains of ferroportin. Hepcidin binds ferroportin in an outward-open conformation and completely occludes the iron efflux pathway to inhibit transport. The carboxy-terminus of hepcidin directly contacts the divalent metal in the ferroportin C-domain. We further show that hepcidin binding to ferroportin is coupled to iron binding, with an 80-fold increase in hepcidin affinity in the presence of iron. These results suggest a model for hepcidin regulation of ferroportin, where only iron loaded ferroportin molecules are targeted for degradation. More broadly, our structural and functional insights are likely to enable more targeted manipulation of the hepcidin-ferroportin axis in disorders of iron homeostasis. 2020-08-19 2020-10 /pmc/articles/PMC7906036/ /pubmed/32814342 http://dx.doi.org/10.1038/s41586-020-2668-z Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Billesbølle, Christian B.
Azumaya, Caleigh M.
Kretsch, Rachael C.
Powers, Alexander S.
Gonen, Shane
Schneider, Simon
Arvedson, Tara
Dror, Ron O.
Cheng, Yifan
Manglik, Aashish
Structure of hepcidin-bound ferroportin reveals iron homeostatic mechanisms
title Structure of hepcidin-bound ferroportin reveals iron homeostatic mechanisms
title_full Structure of hepcidin-bound ferroportin reveals iron homeostatic mechanisms
title_fullStr Structure of hepcidin-bound ferroportin reveals iron homeostatic mechanisms
title_full_unstemmed Structure of hepcidin-bound ferroportin reveals iron homeostatic mechanisms
title_short Structure of hepcidin-bound ferroportin reveals iron homeostatic mechanisms
title_sort structure of hepcidin-bound ferroportin reveals iron homeostatic mechanisms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7906036/
https://www.ncbi.nlm.nih.gov/pubmed/32814342
http://dx.doi.org/10.1038/s41586-020-2668-z
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