Protein lipoylation in mitochondria requires Fe–S cluster assembly factors NFU4 and NFU5

Author:

Przybyla-Toscano Jonathan1,Maclean Andrew E23,Franceschetti Marina2ORCID,Liebsch Daniela4ORCID,Vignols Florence5,Keech Olivier4ORCID,Rouhier Nicolas1ORCID,Balk Janneke23ORCID

Affiliation:

1. Université de Lorraine, INRAE, IAM, F-54000 Nancy, France

2. Department of Biological Chemistry, John Innes Centre, Norwich NR4 7UH, UK

3. School of Biological Sciences, University of East Anglia, Norwich NR4 7TJ, UK

4. Department of Plant Physiology, Umeå Plant Science Centre, Umeå University, S-90187 Umeå, Sweden

5. BPMP, Université de Montpellier, CNRS, INRAE, SupAgro, F-34060 Montpellier, France

Abstract

Abstract Plants have evolutionarily conserved NifU (NFU)-domain proteins that are targeted to plastids or mitochondria. “Plastid-type” NFU1, NFU2, and NFU3 in Arabidopsis (Arabidopsis thaliana) play a role in iron–sulfur (Fe–S) cluster assembly in this organelle, whereas the type-II NFU4 and NFU5 proteins have not been subjected to mutant studies in any plant species to determine their biological role. Here, we confirmed that NFU4 and NFU5 are targeted to the mitochondria. The proteins were constitutively produced in all parts of the plant, suggesting a housekeeping function. Double nfu4 nfu5 knockout mutants were embryonic lethal, and depletion of NFU4 and NFU5 proteins led to growth arrest of young seedlings. Biochemical analyses revealed that NFU4 and NFU5 are required for lipoylation of the H proteins of the glycine decarboxylase complex and the E2 subunits of other mitochondrial dehydrogenases, with little impact on Fe–S cluster-containing respiratory complexes or aconitase. Consequently, the Gly-to-Ser ratio was increased in mutant seedlings and early growth improved with elevated CO2 treatment. In addition, pyruvate, 2-oxoglutarate, and branched-chain amino acids accumulated in nfu4 nfu5 mutants, further supporting defects in the other three mitochondrial lipoate-dependent enzyme complexes. NFU4 and NFU5 interacted with mitochondrial lipoyl synthase (LIP1) in yeast 2-hybrid and bimolecular fluorescence complementation assays. These data indicate that NFU4 and NFU5 have a more specific function than previously thought, most likely providing Fe–S clusters to lipoyl synthase.

Funder

John Innes Foundation

Biotechnology and Biological Sciences Research Council

T4F Trees for the Future and the Kempe Foundations

French National Research Agency

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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