A structural model of human ferroportin has been built using two Escherichia coli proteins belonging to the major facilitator superfamily of transporters. A potential iron binding site was identified in the inward-open conformation of the model, and its relevance was tested through measurement of iron export of HEK293T cells expressing wild-type or mutated ferroportin. Aspartates 39 and 181 were found to be essential for the transport ability of the protein. Noteworthy, the D181V mutation is naturally found in type 4 hemochromatosis with reticuloendothelial system iron retention phenotype. The outward-open conformation of ferroportin was also predicted, and showed that significant conformational changes must occur in the inward- to outward-open transition of ferroportin. In particular, putative iron ligands move several ångströms away from each other, leading to the logical conclusion that the iron binding site is not occupied by the metal in the outward-open conformation of ferroportin. © 2014 FEBS.

A structural model of human ferroportin and of its iron binding site / BONACCORSI DI PATTI, Maria Carmela; Fabio, Polticelli; Giovanna, Cece; Cutone, Antimo; Franco, Felici; Tiziana, Persichini; Giovanni, Musci. - In: THE FEBS JOURNAL. - ISSN 1742-464X. - STAMPA. - 281:12(2014), pp. 2851-2860. [10.1111/febs.12825]

A structural model of human ferroportin and of its iron binding site

BONACCORSI DI PATTI, Maria Carmela;CUTONE, ANTIMO;
2014

Abstract

A structural model of human ferroportin has been built using two Escherichia coli proteins belonging to the major facilitator superfamily of transporters. A potential iron binding site was identified in the inward-open conformation of the model, and its relevance was tested through measurement of iron export of HEK293T cells expressing wild-type or mutated ferroportin. Aspartates 39 and 181 were found to be essential for the transport ability of the protein. Noteworthy, the D181V mutation is naturally found in type 4 hemochromatosis with reticuloendothelial system iron retention phenotype. The outward-open conformation of ferroportin was also predicted, and showed that significant conformational changes must occur in the inward- to outward-open transition of ferroportin. In particular, putative iron ligands move several ångströms away from each other, leading to the logical conclusion that the iron binding site is not occupied by the metal in the outward-open conformation of ferroportin. © 2014 FEBS.
2014
ferroportin; molecular modelling; hemochromatosis; molecular modeling; fpn; major facilitator superfamily; iron
01 Pubblicazione su rivista::01a Articolo in rivista
A structural model of human ferroportin and of its iron binding site / BONACCORSI DI PATTI, Maria Carmela; Fabio, Polticelli; Giovanna, Cece; Cutone, Antimo; Franco, Felici; Tiziana, Persichini; Giovanni, Musci. - In: THE FEBS JOURNAL. - ISSN 1742-464X. - STAMPA. - 281:12(2014), pp. 2851-2860. [10.1111/febs.12825]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/558891
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