SummaryIn contrast to the majority of O2-activating enzymes, which depend on an organic cofactor or a metal ion for catalysis, a particular group of structurally unrelated oxygenases is functional without any cofactor. In this study, we characterized the mechanism of O2 activation in the reaction pathway of a cofactor-independent dioxygenase with an α/β-hydrolase fold, which catalyzes the oxygenolytic cleavage of 2-alkyl-3-hydroxy-4(1H)-quinolones. Chemical analysis and electron paramagnetic resonance spectroscopic data revealed that O2 activation in the enzyme’s active site is substrate-assisted, relying on single electron transfer from the bound substrate anion to O2 to form a radical pair, which recombines to a C2-peroxide intermediate. ...
Cofactor-less oxygenases perform challenging catalytic reactions between singlet co-substrates and t...
Molecular oxygen (O2), in spite being a potentially strong oxidant, typically displays very poor rea...
The activation of dioxygen by oxygenase enzymes is one of the more remarkable reactions in biology, ...
Cofactor-less oxygenases perform challenging catalytic reactions between singlet co-substrates and t...
Dioxygenases catalyze a diverse range of biological reactions by incorporating molecular oxygen into...
Dioxygenases catalyze a diverse range of biological reactions by incorporating molecular oxygen into...
Whereas the majority of O2-metabolizing enzymes depend on transition metal ions or organic cofactors...
The O2 (dioxygen) is paramagnetic molecule with two non-paired electron spins and triplet ground sta...
Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen...
Cofactor-less oxygenases perform challenging catalytic reactions between singlet co-substrates and t...
Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen...
Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen...
In this issue of Chemistry & Biology, Thierbach and colleagues establish the chemical mechanism for ...
The vast majority of characterized oxygenases use bound cofactors to activate molecular oxygen to ca...
The vast majority of characterized oxygenases use bound cofactors to activate molecular oxygen to ca...
Cofactor-less oxygenases perform challenging catalytic reactions between singlet co-substrates and t...
Molecular oxygen (O2), in spite being a potentially strong oxidant, typically displays very poor rea...
The activation of dioxygen by oxygenase enzymes is one of the more remarkable reactions in biology, ...
Cofactor-less oxygenases perform challenging catalytic reactions between singlet co-substrates and t...
Dioxygenases catalyze a diverse range of biological reactions by incorporating molecular oxygen into...
Dioxygenases catalyze a diverse range of biological reactions by incorporating molecular oxygen into...
Whereas the majority of O2-metabolizing enzymes depend on transition metal ions or organic cofactors...
The O2 (dioxygen) is paramagnetic molecule with two non-paired electron spins and triplet ground sta...
Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen...
Cofactor-less oxygenases perform challenging catalytic reactions between singlet co-substrates and t...
Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen...
Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen...
In this issue of Chemistry & Biology, Thierbach and colleagues establish the chemical mechanism for ...
The vast majority of characterized oxygenases use bound cofactors to activate molecular oxygen to ca...
The vast majority of characterized oxygenases use bound cofactors to activate molecular oxygen to ca...
Cofactor-less oxygenases perform challenging catalytic reactions between singlet co-substrates and t...
Molecular oxygen (O2), in spite being a potentially strong oxidant, typically displays very poor rea...
The activation of dioxygen by oxygenase enzymes is one of the more remarkable reactions in biology, ...