OsmC and incomplete glycine decarboxylase complex mediate reductive detoxification of peroxides in hydrogenosomes of Trichomonas vaginalis
Language English Country Netherlands Media print-electronic
Document type Journal Article
PubMed
26794804
DOI
10.1016/j.molbiopara.2016.01.006
PII: S0166-6851(16)30006-8
Knihovny.cz E-resources
- Keywords
- Glycine decarboxylase complex, Hydrogenosomes, Lipoate, OsmC, Peroxide, Trichomonas,
- MeSH
- Axenic Culture MeSH
- Escherichia coli genetics metabolism MeSH
- Gene Expression MeSH
- Phylogeny MeSH
- Metabolic Detoxication, Phase I genetics MeSH
- Kinetics MeSH
- Cloning, Molecular MeSH
- Mitochondria metabolism ultrastructure MeSH
- Oxidation-Reduction MeSH
- Hydrogen Peroxide metabolism MeSH
- Peroxidases genetics metabolism MeSH
- Protozoan Proteins genetics metabolism MeSH
- Recombinant Proteins genetics metabolism MeSH
- Amino Acid Sequence MeSH
- Sequence Homology, Amino Acid MeSH
- Sequence Alignment MeSH
- Glycine Decarboxylase Complex genetics metabolism MeSH
- Trichomonas vaginalis genetics metabolism ultrastructure MeSH
- Protein Binding MeSH
- Publication type
- Journal Article MeSH
- Names of Substances
- Hydrogen Peroxide MeSH
- Peroxidases MeSH
- Protozoan Proteins MeSH
- Recombinant Proteins MeSH
- Glycine Decarboxylase Complex MeSH
- thiol-dependent peroxidase MeSH Browser
Osmotically inducible protein (OsmC) and organic hydroperoxide resistance protein (Ohr) are small, thiol-dependent peroxidases that comprise a family of prokaryotic protective proteins central to the defense against deleterious effects of organic hydroperoxides, which are reactive molecules that are formed during interactions between the host immune system and pathogens. Trichomonas vaginalis, a sexually transmitted parasite of humans, possesses OsmC homologues in its hydrogenosomes, anaerobic mitochondrial organelles that harbor enzymes and pathways that are sensitive to oxidative damage. The glycine decarboxylase complex (GDC), which consists of four proteins (i.e., L, H, P and T), is in eukaryotes exclusively mitochondrial enzymatic system that catalyzes oxidative decarboxylation and deamination of glycine. However, trichomonad hydrogenosomes contain only the L and H proteins, whose physiological functions are unknown. Here, we found that the hydrogenosomal L and H proteins constitute a lipoate-dependent redox system that delivers electrons from reduced nicotinamide adenine dinucleotide (NADH) to OsmC for the reductive detoxification of peroxides. Our searches of genome databases revealed that, in addition to prokaryotes, homologues of OsmC/Ohr family proteins with predicted mitochondrial localization are present in various eukaryotic lineages. Therefore, we propose that the novel OsmC-GDC-based redox system may not be limited to T. vaginalis.
References provided by Crossref.org
The Mastigamoeba balamuthi Genome and the Nature of the Free-Living Ancestor of Entamoeba
Organelles that illuminate the origins of Trichomonas hydrogenosomes and Giardia mitosomes