Knock-downs of iron-sulfur cluster assembly proteins IscS and IscU down-regulate the active mitochondrion of procyclic Trypanosoma brucei
Language English Country United States Media print-electronic
Document type Journal Article, Research Support, Non-U.S. Gov't
PubMed
16882667
DOI
10.1074/jbc.m513781200
PII: S0021-9258(19)33959-6
Knihovny.cz E-resources
- MeSH
- Adenosine Triphosphate chemistry metabolism MeSH
- Cytochrome Reductases metabolism MeSH
- Down-Regulation * MeSH
- Electron Spin Resonance Spectroscopy MeSH
- Genetic Techniques MeSH
- Genetic Vectors MeSH
- Conserved Sequence MeSH
- Mitochondrial Proteins chemistry genetics MeSH
- Mitochondria metabolism MeSH
- Models, Genetic MeSH
- Iron-Sulfur Proteins chemistry genetics MeSH
- RNA Interference MeSH
- Trypanosoma brucei brucei MeSH
- Ubiquinone analogs & derivatives chemistry MeSH
- Animals MeSH
- Check Tag
- Animals MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
- Names of Substances
- Adenosine Triphosphate MeSH
- Cytochrome Reductases MeSH
- Mitochondrial Proteins MeSH
- Iron-Sulfur Proteins MeSH
- Ubiquinone MeSH
- ubiquinol MeSH Browser
Transformation of the metabolically down-regulated mitochondrion of the mammalian bloodstream stage of Trypanosoma brucei to the ATP-producing mitochondrion of the insect procyclic stage is accompanied by the de novo synthesis of citric acid cycle enzymes and components of the respiratory chain. Because these metabolic pathways contain multiple iron-sulfur (FeS) proteins, their synthesis, including the formation of FeS clusters, is required. However, nothing is known about FeS cluster biogenesis in trypanosomes, organisms that are evolutionarily distant from yeast and humans. Here we demonstrate that two mitochondrial proteins, the cysteine desulfurase TbiscS and the metallochaperone TbiscU, are functionally conserved in trypanosomes and essential for this parasite. Knock-downs of TbiscS and TbiscU in the procyclic stage by means of RNA interference resulted in reduced activity of the marker FeS enzyme aconitase in both the mitochondrion and cytosol because of the lack of FeS clusters. Moreover, down-regulation of TbiscS and TbiscU affected the metabolism of procyclic T. brucei so that their mitochondria resembled the organelle of the bloodstream stage; mitochondrial ATP production was impaired, the activity of the respiratory chain protein complex ubiquinol-cytochrome-c reductase was reduced, and the production of pyruvate as an end product of glucose metabolism was enhanced. These results indicate that mitochondrial FeS cluster assembly is indispensable for completion of the T. brucei life cycle.
References provided by Crossref.org
Chelation of Mitochondrial Iron as an Antiparasitic Strategy
Branched late-steps of the cytosolic iron-sulphur cluster assembly machinery of Trypanosoma brucei
Fe-S cluster assembly in the supergroup Excavata
Futile import of tRNAs and proteins into the mitochondrion of Trypanosoma brucei evansi
The Fe/S cluster assembly protein Isd11 is essential for tRNA thiolation in Trypanosoma brucei
Mitochondrial tRNA import in Trypanosoma brucei is independent of thiolation and the Rieske protein
Frataxin, a conserved mitochondrial protein, in the hydrogenosome of Trichomonas vaginalis