There are three families of mononuclear molybdenum enzymes that catalyze oxygen atom transfer (OAT) reactions, named after a typical example from each family, viz., dimethyl sulfoxide reductase (DMSOR), sulfite oxidase (SO), and xanthine oxidase (XO). These families differ in the construction of their active sites, with two molybdopterin groups in the DMSOR family, two oxy groups in the SO family, and a sulfido group in the XO family. We have employed density functional theory calculations on cluster models of the active sites to understand the selection of molybdenum ligands in the three enzyme families. Our calculations show that the DMSOR active site has a much stronger oxidative power than the other two sites, owing to the extra molybdo...
The DMSO reductase family is the largest and most diverse family of mononuclear molybdenum oxygen-at...
The molybdenum cofactor (Moco)-containing enzymes are divided into three classes that are named afte...
The oxygen-atom transfer reaction catalyzed by the mononuclear molybdenum enzyme dimethyl sulfoxide ...
There are three families of mononuclear molybdenum enzymes that catalyze oxygen atom transfer (OAT) ...
We review computational studies of three important mono-nuclear molybdenum oxo-transfer enzymes, dim...
We review computational studies of three important mono-nuclear molybdenum oxo-transfer enzymes, dim...
A thorough computational study has been performed to investigate oxygen atom transfer (OAT) reaction...
The thesis deals with models for molybdopterin-dependent enzymes. Several model systems containing m...
Density functional calculations have been used to investigate oxygen atom transfer reactions from th...
Sulfite oxidase is a mononuclear molybdenum enzyme that oxidises sulfite to sulfate in many organism...
Catalytic oxygen atom transfer (OAT), which frequently employs molybdenum oxo species, is an importa...
Catalytic oxygen atom transfer (OAT), which frequently employs molybdenum oxo species, is an importa...
Catalytic oxygen atom transfer (OAT), which frequently employs molybdenum oxo species, is an importa...
The oxidation of sulfite to sulfate by two different models of the active site of sulfite oxidase ha...
The DMSO reductase family is the largest and most diverse family of mononuclear molybdenum oxygen-at...
The DMSO reductase family is the largest and most diverse family of mononuclear molybdenum oxygen-at...
The molybdenum cofactor (Moco)-containing enzymes are divided into three classes that are named afte...
The oxygen-atom transfer reaction catalyzed by the mononuclear molybdenum enzyme dimethyl sulfoxide ...
There are three families of mononuclear molybdenum enzymes that catalyze oxygen atom transfer (OAT) ...
We review computational studies of three important mono-nuclear molybdenum oxo-transfer enzymes, dim...
We review computational studies of three important mono-nuclear molybdenum oxo-transfer enzymes, dim...
A thorough computational study has been performed to investigate oxygen atom transfer (OAT) reaction...
The thesis deals with models for molybdopterin-dependent enzymes. Several model systems containing m...
Density functional calculations have been used to investigate oxygen atom transfer reactions from th...
Sulfite oxidase is a mononuclear molybdenum enzyme that oxidises sulfite to sulfate in many organism...
Catalytic oxygen atom transfer (OAT), which frequently employs molybdenum oxo species, is an importa...
Catalytic oxygen atom transfer (OAT), which frequently employs molybdenum oxo species, is an importa...
Catalytic oxygen atom transfer (OAT), which frequently employs molybdenum oxo species, is an importa...
The oxidation of sulfite to sulfate by two different models of the active site of sulfite oxidase ha...
The DMSO reductase family is the largest and most diverse family of mononuclear molybdenum oxygen-at...
The DMSO reductase family is the largest and most diverse family of mononuclear molybdenum oxygen-at...
The molybdenum cofactor (Moco)-containing enzymes are divided into three classes that are named afte...
The oxygen-atom transfer reaction catalyzed by the mononuclear molybdenum enzyme dimethyl sulfoxide ...