The electron transport chain in anaerobically functioning eukaryotes.
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Summary
Eukaryotic fumarate reductases were shown to interact with rhodoquinone (a benzoquinone), whereas most prokaryoticfumarate reducing enzymes interact with the naphtoquinones menaquinone and demethylmenaquinone.
- Type
- review
- Published
- 1998-06-10
- Cited by
- 156
- References
- 29
- Access
- Open access
- OpenAlex
- https://openalex.org/W2012523080
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:23558312
Keywords
Fumarate reductase, Succinate dehydrogenase, Electron transport chain, Respiratory chain, Electron acceptor
References
- The proton‐pumping respiratory complex I of bacteria and mitochondria and its homologue in chloroplasts
- Chemistry and Biochemistry of Flavoenzymes: Volume I
- Demonstration of separate genetic loci encoding distinct membrane-bound respiratory NADH dehydrogenases in Escherichia coli
- Fumarate reductase mutants of Escherichia coli that lack covalently bound flavin.
- Physiological and metabolic responses to hypoxia in invertebrates.
- Molecular mechanisms in bioenergetics
- Purification and characterization of electron-transfer flavoprotein: rhodoquinone oxidoreductase from anaerobic mitochondria of the adult parasitic nematode, Ascaris suum.
- Expression and functional properties of fumarate reductase.
- ORIGIN OF EUKARYOTIC CELLS
- Rhodoquinone and Complex II of the Electron Transport Chain in Anaerobically Functioning Eukaryotes (*)
- Adaptation of the polychaete worm Scoloplos armiger to hypoxic conditions
- Role of menaquinone in the reduction of fumarate, nitrate, iron(III) and manganese(IV) by Shewanella putrefaciens MR‐1
- Metazoan life without oxygen
- Two Hydrophobic Subunits Are Essential for the Heme b Ligation and Functional Assembly of Complex II (Succinate-Ubiquinone Oxidoreductase) from Escherichia coli(*)
- Cytochromes in the respiratory chain of helminth mitochondria.
- THE EVOLUTION OF BIOLOGICAL ENERGY‐TRANSDUCING SYSTEMS
- A structural moDAl for the membrane‐integral domain of succinate:quinone oxidoreductases
- Helminths: comparison of their rhodoquinone.
- Differential expression of two succinate dehydrogenase subunit-B genes and a transition in energy metabolism during the development of the parasitic nematode Haemonchus contortus.
- Energy generation in parasitic helminths.
Cited by
- Unique properties of respiratory chain in Plasmodium falciparum mitochondria.
- Complex II from phototrophic purple bacterium Rhodoferax fermentans displays rhodoquinol-fumarate reductase activity.
- Caracterización de transportadores de aminoácidos en Echinococcus granulosus
- Isolierung und Identifizierung der hauptaktiven antitrypanosomalen Komponente des Viperngiftes von Eristocophis macmahoni und ihre Effekte auf Trypanosoma brucei
- Dynamic Energy Budget Theory for Metabolic Organisation
- Functional studies on a novel cytochrome c from Rhodobacter sphaeroides
- Adaptation and stress defence in intertidal and subtidal Antarctic limpets (Nacella concinna): A study of the plasticity of molecular and biochemical stress response in Antarctic invertebrates.
- Participação de genes associados ao processo de respiração anaeróbica na infecção de aves por Salmonella Typhimurium
- Electron-transfer complexes in Ascaris mitochondria.
- Quinones in aerobic and anaerobic mitochondria
- Predicting proteomes of mitochondria and related organelles from genomic and expressed sequence tag data.
- Energy metabolism and its compartmentation in Trypanosoma brucei.
- Multiple Lineages of the Mitochondrial Gene NADH Dehydrogenase Subunit 1 (ND1) in Parasitic Helminths: Implications for Molecular Evolutionary Studies of Facultatively Anaerobic Eukaryotes
- Rickettsiaceae, Rickettsia-Like Endosymbionts, and the Origin of Mitochondria
- Evolution of the enzymes of the citric acid cycle and the glyoxylate cycle of higher plants. A case study of endosymbiotic gene transfer.
- Of early animals, anaerobic mitochondria, and a modern sponge
- Primitive anaerobic protozoa: a false concept?
- Structural Insights into the Molecular Design of Flutolanil Derivatives Targeted for Fumarate Respiration of Parasite Mitochondria
- A Mitochondrial NADH-dependent Fumarate Reductase Involved in the Production of Succinate Excreted by Procyclic Trypanosoma brucei*
- Fermentation metabolism and its evolution in algae
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