dioxygenase
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Dioxygenases are oxidoreductase enzymes. Aerobic life, from simple single-celled bacteria species to complex eukaryotic organisms, has evolved to depend on the oxidizing power of dioxygen in various metabolic pathways. From energetic adenosine triphosphate (ATP) generation to xenobiotic degradation, the use of dioxygen as a biological oxidant is widespread and varied in the exact mechanism of its use. Enzymes employ many different schemes to use dioxygen, and this largely depends on the substrate and reaction at hand.
Research
40,376 papers- TET-dioxygenase deficiency in oncogenesis and its targeting for tumor-selective therapeutics.Seminars in hematology · 2021
- [Advances in epigenetic regulation of the dioxygenase TET1].Sheng wu gong cheng xue bao = Chinese journal of biotechnology · 2024
- Carotenoid Cleavage Dioxygenase 1 and Its Application for the Production of C13-Apocarotenoids in Microbial Cell Factories: A Review.Journal of agricultural and food chemistry · 2023
- Spectroscopic Investigation of Cysteamine Dioxygenase.Biochemistry · 2020
- Understanding human thiol dioxygenase enzymes: structure to function, and biology to pathology.International journal of experimental pathology · 2017
via PubMed
~14 min read
Encyclopedic overview
9 sectionsContents
- Comparison with monooxygenases
- Iron-containing enzymes
- Mononuclear iron dioxygenases
- Rieske dioxygenases
- Heme-containing dioxygenases
- Cambialistic dioxygenases
- Cofactor-independent dioxygenases
- Clinical significance
- References
Dioxygenases are oxidoreductase enzymes. Aerobic life, from simple single-celled bacteria species to complex eukaryotic organisms, has evolved to depend on the oxidizing power of dioxygen in various metabolic pathways. From energetic adenosine triphosphate (ATP) generation to xenobiotic degradation, the use of dioxygen as a biological oxidant is widespread and varied in the exact mechanism of its use. Enzymes employ many different schemes to use dioxygen, and this largely depends on the substrate and reaction at hand.
==Comparison with monooxygenases== In the monooxygenases, only a single atom of dioxygen is incorporated into a substrate with the other being reduced to a water molecule. The dioxygenases () catalyze the oxidation of a substrate without the reduction of one oxygen atom from dioxygen into a water molecule. However, this definition is ambiguous because it does not take into account how many substrates are involved in the reaction. The majority of dioxygenases fully incorporate dioxygen into a single substrate, and a variety of cofactor schemes are utilized to achieve this. For example, in the α-ketoglutarate-dependent enzymes, one atom of dioxygen is incorporated into two substrates, with one always being α-ketoglutarate, and this reaction is brought about by a mononuclear iron center.
Excerpted from Wikipedia’s “dioxygenase” article, available under the CC BY-SA 4.0 licence.