4.6 Article

Protoporphyrin IX Binds to Iron(II)-Loaded and to Zinc-Loaded Human Frataxin

期刊

LIFE-BASEL
卷 13, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/life13010222

关键词

frataxin; iron metabolism; heme biosynthesis; iron-sulfur clusters; ferrochelatase; Friedreich's ataxia; NMR spectroscopy

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In this study, it was demonstrated that human frataxin can bind to zinc in a structurally similar way to iron, but with lower affinity. In addition, both iron-loaded and zinc-loaded frataxins specifically associate with protoporphyrin IX. These findings expand the understanding of frataxin's molecular targets and provide insights into its unknown roles in iron regulation and metabolism.
(1) Background: Human frataxin is an iron binding protein that participates in the biogenesis of iron sulfur clusters and enhances ferrochelatase activity. While frataxin association to other proteins has been extensively characterized up to the structural level, much less is known about the putative capacity of frataxin to interact with functionally related metabolites. In turn, current knowledge about frataxin's capacity to coordinate metal ions is limited to iron (II and III); (2) Methods: here, we used NMR spectroscopy, Molecular Dynamics, and Docking approaches to demonstrate new roles of frataxin; (3) Results: We demonstrate that frataxin also binds Zn2+ in a structurally similar way to Fe2+, but with lower affinity. In turn, both Fe2+-loaded and Zn2+-loaded frataxins specifically associate to protoporphyrin IX with micromolar affinity, while apo-frataxin does not bind to the porphyrin. Protoporphyrin IX association to metal-loaded frataxin shares the binding epitope with ferrochelatase; and (4) Conclusions: these findings expand the plethora of relevant molecular targets for frataxin and may help to elucidate the yet unknown different roles that this protein exerts in iron regulation and metabolism.

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