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  Characterisation of the SUF FeS cluster machinery in the amitochondriate eukaryote Monocercomonoides exilis

Peña-Diaz, P., Braymer, J. J., Vacek, V., Zelená, M., Lometto, S., Hrdý, I., et al. (2023). Characterisation of the SUF FeS cluster machinery in the amitochondriate eukaryote Monocercomonoides exilis. bioRxiv: the preprint server for biology, doi: 10.1101/2023.03.30.534840.

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Peña-Diaz, Priscila1, Author
Braymer, Joseph J.1, Author
Vacek, Vojtěch1, Author
Zelená, Marie1, Author
Lometto, Stefano2, Author           
Hrdý, Ivan1, Author
Treitli, Sebastian C.1, Author
Hochberg, Georg K. A.2, 3, 4, Author                 
Py, Béatrice1, Author
Lill, Roland1, Author
Hampl, Vladimír1, Author
Affiliations:
1external, ou_persistent22              
2Max Planck Research Group Evolutionary Biochemistry, Max Planck Institute for Terrestrial Microbiology, Max Planck Society, ou_3266300              
3Center for Synthetic Microbiology, Philipps-Universität Marburg, ou_persistent22              
4Department of Chemistry, Philipps-Universität Marburg, ou_persistent22              

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 Abstract: Monocercomonoides exilis is the first eukaryotic organism described as a complete amitochondriate, yet it shares common features with heterotrophic anaerobic/microaerophilic protists, some of which bear divergent mitochondrion-related organelles or MROs. It has been postulated that the retention of these organelles stems from their involvement in the assembly of essential cytosolic and nuclear FeS proteins, whose maturation requires the evolutionarily conserved mitochondrial ISC and cytosolic CIA machineries. The amitochondriate M. exilis lacks genes encoding the ISC machinery yet contains a bacteria-derived SUF system (MeSuf), composed of the cysteine desulphurase SufS fused to SufD and SufU, as well as the FeS scaffolding components MeSufB and MeSufC. Here, we show that expression of the M. exilis SUF genes, either individually or in tandem, can restore the maturation of the FeS protein IscR in the Escherichia coli double mutants of ΔsufS ΔiscS and ΔsufB ΔiscUA. In vivo and in vitro studies indicate that purified MeSufB, MeSufC and MeSufDSU proteins interact suggesting that they act as a complex in the protist. MeSufBC can undergo conformational changes in the presence of ATP and assemble FeS clusters under anaerobic conditions in presence and absence of ATP in vitro. Altogether, these results indicate that the dynamically interacting MeSufDSUBC proteins may function as an FeS cluster assembly complex in M. exilis thereby being capable of replacing the organelle-enclosed ISC system of canonical eukaryotes.Competing Interest StatementThe authors have declared no competing interest.

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 Dates: 2023-01
 Publication Status: Issued
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Title: bioRxiv : the preprint server for biology
  Abbreviation : bioRxiv
Source Genre: Journal
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Pages: - Volume / Issue: - Sequence Number: doi: 10.1101/2023.03.30.534840 Start / End Page: - Identifier: ZDB: 2766415-6
CoNE: https://pure.mpg.de/cone/journals/resource/2766415-6