Abstract

Numerous iron-sulfur (Fe-S) proteins with diverse functions are present in the matrix and respiratory chain complexes of mitochondria. Although [4Fe-4S] clusters are the most common type of Fe-S cluster in mitochondria, the molecular mechanism of [4Fe-4S] cluster assembly and insertion into target proteins by the mitochondrial iron-sulfur cluster (ISC) maturation system is not well-understood. Here we report a detailed characterization of two late-acting Fe-S cluster-carrier proteins from Arabidopsis thaliana, NFU4 and NFU5. Yeast two-hybrid and bimolecular fluorescence complementation studies demonstrated interaction of both the NFU4 and NFU5 proteins with the ISCA class of Fe-S carrier proteins. Recombinant NFU4 and NFU5 were purified as apo-proteins after expression in Escherichia coli. In vitro Fe-S cluster reconstitution led to the insertion of one [4Fe-4S]2+ cluster per homodimer as determined by UV-visible absorption/CD, resonance Raman and EPR spectroscopy, and analytical studies. Cluster transfer reactions, monitored by UV-visible absorption and CD spectroscopy, showed that a [4Fe-4S]2+ cluster-bound ISCA1a/2 heterodimer is effective in transferring [4Fe-4S]2+ clusters to both NFU4 and NFU5 with negligible back reaction. In addition, [4Fe-4S]2+ cluster-bound ISCA1a/2, NFU4, and NFU5 were all found to be effective [4Fe-4S]2+ cluster donors for maturation of the mitochondrial apo-aconitase 2 as assessed by enzyme activity measurements. The results demonstrate rapid, unidirectional, and quantitative [4Fe-4S]2+ cluster transfer from ISCA1a/2 to NFU4 or NFU5 that further delineates their respective positions in the plant ISC machinery and their contributions to the maturation of client [4Fe-4S] cluster-containing proteins.

Highlights

  • Iron-sulfur (Fe-S) clusters are protein cofactors that carry out crucial roles in diverse biological processes [1]

  • In vitro studies using mammalian GLRX5 and ISCAs have suggested that the [2Fe-2S] to [4Fe-4S] cluster interconversion occurs during the Fe-S cluster transfer between the glutaredoxin and an ISCA1/2 heterodimer [24, 25]. [4Fe-4S] cluster assembly or release from ISCA heterodimers may be facilitated by the BOLA and IBA57 maturation factors [26, 27]

  • Among other late-acting iron-sulfur cluster (ISC) components, NFU4 and NFU5 interact with ISCA1 proteins, and we further showed that an ISCA1a/2 heterodimer is a competent Fe-S cluster donor for the mitochondrial NFU proteins in Arabidopsis and that [4Fe4S]21 cluster-bound ISCA1a/2, NFU4, and NFU5 are all competent for the maturation of mitochondrial apo-aconitase 2 (ACO2)

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Summary

Introduction

Iron-sulfur (Fe-S) clusters are protein cofactors that carry out crucial roles in diverse biological processes [1]. Among other late-acting ISC components, NFU4 and NFU5 interact with ISCA1 proteins, and we further showed that an ISCA1a/2 heterodimer is a competent Fe-S cluster donor for the mitochondrial NFU proteins in Arabidopsis and that [4Fe4S]21 cluster-bound ISCA1a/2, NFU4, and NFU5 are all competent for the maturation of mitochondrial apo-aconitase 2 (ACO2).

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