Nývltová Eva, Smutná Tamara, Tachezy Jan, Hrdý Ivan
Department of Parasitology, Charles University in Prague, Faculty of Science, Prague, Czech Republic.
Department of Parasitology, Charles University in Prague, Faculty of Science, Prague, Czech Republic.
Mol Biochem Parasitol. 2016 Mar-Apr;206(1-2):29-38. doi: 10.1016/j.molbiopara.2016.01.006. Epub 2016 Jan 18.
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.
渗透诱导蛋白(OsmC)和有机氢过氧化物抗性蛋白(Ohr)是小分子、硫醇依赖性过氧化物酶,它们构成了一个原核生物保护蛋白家族,该家族对于抵御有机氢过氧化物的有害影响至关重要,有机氢过氧化物是宿主免疫系统与病原体相互作用过程中形成的反应性分子。阴道毛滴虫是一种人类性传播寄生虫,在其氢化酶体中拥有OsmC同源物,氢化酶体是一种厌氧线粒体细胞器,其中含有对氧化损伤敏感的酶和代谢途径。甘氨酸脱羧酶复合体(GDC)由四种蛋白质(即L、H、P和T)组成,在真核生物中是唯一在线粒体中的催化甘氨酸氧化脱羧和脱氨的酶系统。然而,滴虫氢化酶体仅含有L和H蛋白,其生理功能尚不清楚。在这里,我们发现氢化酶体L和H蛋白构成了一个硫辛酸依赖性氧化还原系统,该系统将电子从还原型烟酰胺腺嘌呤二核苷酸(NADH)传递给OsmC,用于过氧化物的还原解毒。我们对基因组数据库的搜索显示,除了原核生物外,预测定位于线粒体的OsmC/Ohr家族蛋白的同源物存在于各种真核生物谱系中。因此,我们提出基于OsmC - GDC的新型氧化还原系统可能不限于阴道毛滴虫。