PRIMARY STRUCTURE AND EUBACTERIAL RELATIONSHIPS OF THE PYRUVATE, FERREDOXIN OXIDOREDUCTASE OF THE AMITOCHONDRIATE EUKARYOTE TRICHOMONAS-VAGINALIS

被引:95
作者
HRDY, I
MULLER, M
机构
[1] ROCKEFELLER UNIV, NEW YORK, NY 10021 USA
[2] CHARLES UNIV, FAC SCI, DEPT PHYSIOL & DEV BIOL, CR-12800 PRAGUE 2, CZECH REPUBLIC
关键词
HYDROGENSOME; MOLECULAR PHYLOGENY; ANAEROBIC PROTIST;
D O I
10.1007/BF01215186
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In the eukaryotic unicellular organism Trichomonas vaginalis a key step of energy metabolism, the oxidative decarboxylation of pyruvate with the formation of acetyl-CoA, is catalyzed by the iron-sulfur protein pyruvate:ferredoxin oxidoreductase (PFO) and not by the almost-ubiquitous pyruvate dehydrogenase multienzyme complex. This enzyme is localized in the hydrogenosome, an organelle bounded by a double membrane. PFO and its closely related homolog, pyruvate: flavodoxin oxidoreductase, are enzymes found in a number of archaebacteria and eubacteria. The presence of these enzymes in eukaryotes is restricted, however, to a few amitochondriate groups. To gain more insight into the evolutionary relationships of T. vaginalis PFO we determined the primary structure of its two genes (pfoA and pfoB). The deduced amino acid sequences showed 95% positional identity. Motifs implicated in related enzymes in liganding the Fe-S centers and thiamine pyrophosphate were well conserved. The T. vaginalis PFOs were found to be homologous to eubacterial pyruvate: flavodoxin oxidoreductases and showed about 40% amino acid identity to these enzymes over their entire length. Lack of eubacterial PFO sequences precluded a comparison. pfoA and pfoB revealed a greater distance from related enzymes of Archaebacteria. The conceptual translation of the nucleotide sequences predicted an amino-terminal pentapeptide not present in the mature protein. This processed leader sequence was similar to but shorter than leader sequences noted in other hydrogenosomal proteins. These sequences an assumed to be involved in organellar targeting and import. The results underscore the unusual characteristics of T. vaginalis metabolism and of their hydrogenosomes. They also suggest that in its energy metabolism T. vaginalis is closer to eubacteria than archaebacteria.
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页码:388 / 396
页数:9
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