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Proton assisted oxygen-oxygen bond splitting in cytochrome P450
André R. Groenhof
, Andreas W. Ehlers
,
Koop Lammertsma
Vrije Universiteit Amsterdam
Research output
:
Contribution to journal
›
Article
›
peer-review
46
Citations (Scopus)
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Keyphrases
Cytochrome P450 (CYP450)
100%
Proton
100%
Bond Splitting
100%
Oxygen Bond
100%
Catalase
50%
Density Functional Theory
50%
Acidity
50%
Protonation
50%
Peroxidase
50%
Oxo Compounds
50%
Iron-oxo
50%
Catalytic Cycle
50%
Bond Scission
50%
Endothermicity
50%
Reactive Intermediates
50%
Proton Source
50%
Oxidative Pathway
50%
Compound I
50%
Compound 0
50%
Hydroperoxo
50%
Heme Ligand
50%
Regulatory Components
50%
Chemistry
Dioxygen
100%
Cytochrome P450
100%
Energetics
50%
Reactive Intermediate
50%
Catalase
50%
formation
50%
catalytic cycle
50%
acidity
50%
Density Functional Theory
50%
protonation
50%
Peroxidase
50%
Heme Iron
50%
Biochemistry, Genetics and Molecular Biology
Cytochrome P450
100%
Catalase
50%
Energy Transfer
50%
Peroxidase
50%
Lactoperoxidase
50%
Protonation
50%
Heme Iron
50%
Medicine and Dentistry
Cytochrome P450
100%
Energy Transfer
50%
Density Functional Theory
50%
Catalase
50%
Peroxidase
50%
Lactoperoxidase
50%
Heme Iron
50%