Keyphrases
Ribonucleotide Reductase
71%
Escherichia Coli
59%
Diiron
52%
Fe(IV)
45%
Fe(III)
42%
Chlamydia Trachomatis
37%
Higher Spin
37%
α-ketoglutarate (α-KG)
33%
Dioxygenase
32%
Fe(II)
32%
Mssbauer
32%
Mössbauer Spectroscopy
30%
Oxygen Activation
24%
Hydroxylation
21%
Oxygenase
20%
S-adenosylmethionine
19%
Halogenase
19%
Radical S-Adenosylmethionine
18%
Dioxygen
18%
Non-heme
18%
Non-heme Iron Enzyme
16%
Electronic Structure
16%
Active Sites
16%
Electron Transfer
16%
Cyanobacteria
15%
Ferryl
15%
Mixed Valence
15%
Ferryl Intermediate
15%
Non-heme Iron
15%
Mn(IV)
14%
C-H Bond
14%
Tyrosyl Radical
13%
Myo-inositol Oxygenase
13%
Peroxo
13%
Spectroscopic Characterization
13%
2-oxoglutarate-dependent Dioxygenase
12%
57Fe
12%
Formate
12%
Heme
11%
Peroxide
11%
Density Functional Calculations
11%
Iron(III)
11%
Lipoyl Synthase
11%
Spectroscopic Studies
11%
Hydrogen Abstraction
11%
AurF
11%
Carboxylate
11%
Extended X-ray Absorption Fine Structure (EXAFS)
11%
Hydroxylase
10%
IV Iron
10%
Biochemistry, Genetics and Molecular Biology
Enzyme
100%
Oxygenase
65%
Escherichia coli
48%
Ribonucleotide Reductase
33%
Synthase
31%
Anabolism
30%
Chlamydia Trachomatis
27%
Hydroxylation
27%
S-Adenosyl Methionine
27%
Ribonucleotide Reductase
26%
Dioxygenase
19%
Electron Transport
18%
Iron-Sulfur Cluster
18%
Active Site
18%
Oxidoreductase
17%
X Ray
17%
Absorption
17%
Alpha Oxidation
16%
Iron Enzymes
15%
Taurine
15%
Dioxygenase
13%
Spectroscopy
13%
Amino Acids
12%
Tyrosine
11%
Oxidase
9%
Streptomyces
9%
Radical SAM
9%
Iron-Sulfur Protein
9%
Heme Oxygenase
9%
Cysteine
9%
Mitochondrial Membrane Transport Protein
8%
Cyanobacteria
8%
Rebound
8%
Precursor
8%
Nitric-Oxide Reductase
7%
Hydrogen Peroxide
7%
Nitric Oxide
7%
Reductase
7%
Wild Type
7%
Metalloenzyme
7%
Crystal Structure
7%
Dehydrogenation
7%
Decarboxylation
7%
Fatty Aldehyde
7%
Pulse Rate
6%
Catalytic Mechanism
6%
Halogenation
6%
Chemistry
Oxygenase
47%
EPR Spectroscopy
35%
Cofactor
28%
Ribonucleotide
26%
Spectroscopy
22%
Electronic State
22%
Dioxygenase
21%
Dioxygen
21%
Hydrogen
20%
Manganese
18%
Ground State
18%
Electron Transfer
12%
Electron Transport
12%
Spectroscopy
11%
Formate
10%
Extended X Ray Absorption Fine Structure Spectroscopy
9%
Heme
9%
Hydrogen Atom
9%
Structure
9%
X Ray Absorption Spectroscopy
9%
Spin State
9%
Catalysis
8%
Glutarate
8%
Nitric Oxide
8%
Metalloenzyme
8%
Reaction Intermediate
8%
Ferritin
7%
Decarboxylation
7%
Nuclear Resonance
7%
Magnetic Susceptibility Measurement
7%
Hydroxylation
7%
Arginine
7%
Fatty Aldehyde
7%
Cysteine
7%
Succinate
6%
Iron-Sulfur Cluster
6%
Halide
6%
Taurine
6%
Crystal Structure
6%