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Biochemistry and function of methionine sulfoxide reductase
Byung Cheon Lee
Department of Biosystems and Biotechnology
* New professors
Research output
:
Chapter in Book/Report/Conference proceeding
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Chapter
2
Citations (Scopus)
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Medicine & Life Sciences
Actins
6%
Biochemistry
51%
Cysteine
6%
dimethylaniline monooxygenase (N-oxide forming)
11%
Electron Transport
15%
Membrane Proteins
5%
Methionine
29%
methionine sulfoxide
95%
methionine sulfoxide reductase
100%
Methionine Sulfoxide Reductases
12%
Oxidation-Reduction
6%
Oxidative Stress
10%
Oxidoreductases
6%
Post Translational Protein Processing
7%
Proteins
13%
Reactive Oxygen Species
5%
Reducing Agents
8%
Selenocysteine
10%
Selenoproteins
10%
Thioredoxins
9%
Chemical Compounds
Biochemistry
52%
Cysteine
7%
Electron Transport
7%
Methionine
58%
Oxidative Stress
16%
Physiological Role
10%
Protein
10%
Reactive Oxygen Metabolite
7%
Reducing Agent
7%
Resistance
5%
Selenocysteine Residue
13%
Sulfoxide
56%
Thioredoxin
10%
Agriculture & Biology
biochemistry
53%
flavin-containing monooxygenase
5%
methionine
49%
oxidation
5%
oxidative stress
6%
proteins
7%
selenocysteine
5%
selenoproteins
5%