Dioxygenases catalyze a diverse range of biological reactions by incorporating molecular oxygen into organic substrates. Typically, they use transition metals or organic cofactors for catalysis. Bacterial 1-H-3-hydroxy-4-oxoquinaldine-2,4-dioxygenase (HOD) catalyzes the spin-forbidden transfer of dioxygen to its N-heteroaromatic substrate in the absence of any cofactor. We combined kinetics, spectroscopic and computational approaches to establish a novel reaction mechanism. The present work gives insight into the rate limiting steps in the reaction mechanism, the effect of first-coordination sphere amino acids as well as electron-donating/electron-withdrawing substituents on the substrate. We highlight the role of active site residues Ser10...
Protein fold adaptation to novel enzymatic reactions is a fundamental evolutionary process. Cofactor...
Protein fold adaptation to novel enzymatic reactions is a fundamental evolutionary process. Cofactor...
[EN]Despite being a very strong oxidizing agent, most organic molecules are not oxidized in the pres...
Dioxygenases catalyze a diverse range of biological reactions by incorporating molecular oxygen into...
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...
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...
Cofactor-less oxygenases perform challenging catalytic reactions between singlet co-substrates and t...
The O2 (dioxygen) is paramagnetic molecule with two non-paired electron spins and triplet ground sta...
Enzymatic catalysis of oxygenation reactions in the absence of metal or organic cofactors is a consi...
SummaryIn contrast to the majority of O2-activating enzymes, which depend on an organic cofactor or ...
Rieske dioxygenases belong to the non-heme iron family of oxygenases and catalyze important cis-dihy...
14 pags., 10 figs.Despite being a very strong oxidizing agent, most organic molecules are not oxidiz...
Protein fold adaptation to novel enzymatic reactions is a fundamental evolutionary process. Cofactor...
Protein fold adaptation to novel enzymatic reactions is a fundamental evolutionary process. Cofactor...
[EN]Despite being a very strong oxidizing agent, most organic molecules are not oxidized in the pres...
Dioxygenases catalyze a diverse range of biological reactions by incorporating molecular oxygen into...
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...
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...
Cofactor-less oxygenases perform challenging catalytic reactions between singlet co-substrates and t...
The O2 (dioxygen) is paramagnetic molecule with two non-paired electron spins and triplet ground sta...
Enzymatic catalysis of oxygenation reactions in the absence of metal or organic cofactors is a consi...
SummaryIn contrast to the majority of O2-activating enzymes, which depend on an organic cofactor or ...
Rieske dioxygenases belong to the non-heme iron family of oxygenases and catalyze important cis-dihy...
14 pags., 10 figs.Despite being a very strong oxidizing agent, most organic molecules are not oxidiz...
Protein fold adaptation to novel enzymatic reactions is a fundamental evolutionary process. Cofactor...
Protein fold adaptation to novel enzymatic reactions is a fundamental evolutionary process. Cofactor...
[EN]Despite being a very strong oxidizing agent, most organic molecules are not oxidized in the pres...