4.4 Article

Drosophila frataxin:: An iron chaperone during cellular Fe-S cluster bioassembly

期刊

BIOCHEMISTRY
卷 47, 期 26, 页码 6917-6927

出版社

AMER CHEMICAL SOC
DOI: 10.1021/bi800366d

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  1. NIBIB NIH HHS [P30 EB009998] Funding Source: Medline
  2. NIDDK NIH HHS [DK068139, R37 DK053953, R01 DK068139, R01 DK068139-04, R01 DK053953, DK53953] Funding Source: Medline

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Frataxin, a mitochondrial protein that is directly involved in regulating cellular iron homeostasis, has been suggested to serve as an iron chaperone during cellular Fe-S cluster biosynthesis. In humans, decreased amounts or impaired function of frataxin causes the autosomal recessive neurodegenerative disorder Friedreich's ataxia. Cellular production of Fe-S clusters is accomplished by the Fe cofactor assembly platform enzymes Isu (eukaryotes) and IscU (prokaryotes). In this report, we have characterized the overall stability and iron binding properties of the Drosophila frataxin homologue (Dfh). Dfh is highly folded with secondary structural elements consistent with the structurally characterized frataxin orthologs. While the melting temperature (T-M approximate to 59 degrees C) and chemical stability ([urea](50%) approximate to 2.4 M) of Drosophila frataxin, measured using circular dichroism (CD) and fluorescence spectroscopy, closely match values determined for the human ortholog, pure Dfh is more stable against autodegradation than both the human and yeast proteins. The ferrous iron binding affinity (K-d approximate to 6.0 mu M) and optimal metal to protein stoichiometry (1:1) for Dfh have been measured using isothermal titration calorimetry (ITC). Under anaerobic conditions with salt present, holo-Dfh is a stable iron-loaded protein monomer. Frataxin prevents reactive oxygen species-induced oxidative damage to DNA when presented with both Fe(II) and H2O2. Ferrous iron bound to Dfh is high-spin and held in a partially symmetric Fe-(O/N)(6) coordination environment, as determined by X-ray absorption spectroscopy (XAS). Extended X-ray absorption fine structure (EXAFS) simulations indicate the average Fe-O/N bond length in Dfh is 2.13 angstrom, consistent with a ligand geometry constructed by water and carboxylate oxygens most likely supplied in part by surface-exposed conserved acidic residues located on helix 1 and strand I in the structurally characterized frataxin orthologs. The iron-dependent binding affinity (K-d approximate to 0.21 mu M) and optimal holo-Dfh to Isu monomer stoichiometry (1:1) have also been determined using ITC. Finally, frataxin mediates the delivery of Fe(II) to Isu, promoting Fe-S cluster assembly in vitro. The Dfh-assisted assembly of Fe-S clusters occurs with an observed kinetic rate constant (k(obs)) of 0.096 min(-1).

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