Oxygen reducing terminal oxidases differ with respect to their subunit composition, heme groups, operon structure, and affinity for O2. Six families of terminal oxidases are currently recognized, all of which occur in alphaproteobacterial genomes, two of which are also present in mitochondria. Many alphaproteobacteria encode several different terminal oxidases, likely reflecting ecological versatility with respect to oxygen levels. Terminal oxidase evolution likely started with the advent of O2 roughly 2.4 billion years ago and terminal oxidases diversified in the Proterozoic, during which oxygen levels remained low, around the Pasteur point (ca. 2 μM O2). Among the alphaproteobacterial genomes surveyed, those from members of the Rhodospiri...
© The Author(s), 2017. This article is distributed under the terms of the Creative Commons Attributi...
AbstractThe mitochondrial alternative oxidase is a diiron carboxylate quinol oxidase (Dox) found in ...
AbstractLife arose in a world without oxygen and the first organisms were anaerobes. Here we investi...
Oxygen reducing terminal oxidases differ with respect to their subunit composition, heme groups, ope...
Oxygen reducing terminal oxidases differ with respect to their subunit composition, heme groups, ope...
Oxygen reducing terminal oxidases differ with respect to their subunit composition, heme groups, ope...
Pyruvate : ferredoxin oxidoreductase (PFO) and iron only hydrogenase ([Fe]-HYD) are common enzymes a...
The biological toolkits for aerobic respiration were critical for the rise and diversification of ea...
Eukaryotes arose about 1.6 billion years ago, at a time when oxygen levels were still very low on Ea...
Complex life on our planet crucially depends on strong redox disequilibria afforded by the almost ub...
Complex life on our planet crucially depends on strong redox disequilibria afforded by the almost ub...
Complex life on our planet crucially depends on strong redox disequilibria afforded by the almost ub...
The endosymbiotic origin of mitochondria during eukaryogenesis has long been viewed as an adaptive r...
AbstractThe increasing sequence information on oxygen reductases of the haem–copper superfamily, tog...
Complex life on our planet crucially depends on strong redox disequilibria afforded by the almost ub...
© The Author(s), 2017. This article is distributed under the terms of the Creative Commons Attributi...
AbstractThe mitochondrial alternative oxidase is a diiron carboxylate quinol oxidase (Dox) found in ...
AbstractLife arose in a world without oxygen and the first organisms were anaerobes. Here we investi...
Oxygen reducing terminal oxidases differ with respect to their subunit composition, heme groups, ope...
Oxygen reducing terminal oxidases differ with respect to their subunit composition, heme groups, ope...
Oxygen reducing terminal oxidases differ with respect to their subunit composition, heme groups, ope...
Pyruvate : ferredoxin oxidoreductase (PFO) and iron only hydrogenase ([Fe]-HYD) are common enzymes a...
The biological toolkits for aerobic respiration were critical for the rise and diversification of ea...
Eukaryotes arose about 1.6 billion years ago, at a time when oxygen levels were still very low on Ea...
Complex life on our planet crucially depends on strong redox disequilibria afforded by the almost ub...
Complex life on our planet crucially depends on strong redox disequilibria afforded by the almost ub...
Complex life on our planet crucially depends on strong redox disequilibria afforded by the almost ub...
The endosymbiotic origin of mitochondria during eukaryogenesis has long been viewed as an adaptive r...
AbstractThe increasing sequence information on oxygen reductases of the haem–copper superfamily, tog...
Complex life on our planet crucially depends on strong redox disequilibria afforded by the almost ub...
© The Author(s), 2017. This article is distributed under the terms of the Creative Commons Attributi...
AbstractThe mitochondrial alternative oxidase is a diiron carboxylate quinol oxidase (Dox) found in ...
AbstractLife arose in a world without oxygen and the first organisms were anaerobes. Here we investi...