Molecular Details of the Frataxin-Scaffold Interaction during Mitochondrial Fe-S Cluster Assembly

Iron-sulfur clusters are essential to almost every life form and utilized for their unique structural and redox-targeted activities within cells during many cellular pathways. Although there are three different Fe-S cluster assembly pathways in prokaryotes (the NIF, SUF and ISC pathways) and two in...

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Veröffentlicht in:International journal of molecular sciences 2021-06, Vol.22 (11), p.6006
Hauptverfasser: Campbell, Courtney J, Pall, Ashley E, Naik, Akshata R, Thompson, Lindsey N, Stemmler, Timothy L
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Sprache:eng
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Zusammenfassung:Iron-sulfur clusters are essential to almost every life form and utilized for their unique structural and redox-targeted activities within cells during many cellular pathways. Although there are three different Fe-S cluster assembly pathways in prokaryotes (the NIF, SUF and ISC pathways) and two in eukaryotes (CIA and ISC pathways), the iron-sulfur cluster (ISC) pathway serves as the central mechanism for providing 2Fe-2S clusters, directly and indirectly, throughout the entire cell in eukaryotes. Proteins central to the eukaryotic ISC cluster assembly complex include the cysteine desulfurase, a cysteine desulfurase accessory protein, the acyl carrier protein, the scaffold protein and frataxin (in humans, FS1, SD11, CP, SCU and XN, respectively). Recent molecular details of this complex (labeled from the first letter from each ISC protein outlined earlier), which exists as a dimeric pentamer, have provided real structural insight into how these partner proteins arrange themselves around the cysteine desulfurase, the core dimer of the ( ) complex. In this review, we focus on both frataxin and the scaffold within the human, fly and yeast model systems to provide a better understanding of the biophysical characteristics of each protein alone and within the FXN/ISCU complex as it exists within the larger construct. These details support a complex dynamic interaction between the FXN and ISCU proteins when both are part of the complex and this provides additional insight into the coordinated mechanism of Fe-S cluster assembly.
ISSN:1422-0067
1661-6596
1422-0067
DOI:10.3390/ijms22116006