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Oxidative inactivation of rhodanese by hydrogen peroxide produces states that show differential reactivation
P. M. Horowitz, S. Bowman
Research output
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Contribution to journal
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Article
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peer-review
18
Scopus citations
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Biochemistry, Genetics and Molecular Biology
Rhodanese
100%
Lysozyme
71%
Thioglycolic Acid
71%
Dithiothreitol
57%
Hydrogen Peroxide
42%
Alpha Oxidation
28%
Time
28%
pH
14%
Protein Catabolism
14%
Fluorescence
14%
Disulfide
14%
Active Site
14%
Titer
14%
Gel Filtration
14%
Thiosulfate
14%
Reduction (Chemistry)
14%
Protein
14%
Sample
14%
Arsenite
14%
Protein Hydrolysis
14%
Column Chromatography
14%
Pharmacology, Toxicology and Pharmaceutical Science
Thiosulfate Sulfurtransferase
100%
Thioglycolic Acid
85%
Enzyme
71%
Dithiothreitol
57%
Reagent
42%
Hydrogen Peroxide
42%
Thiol Group
28%
Thiol Derivative
28%
Protein
14%
Disulfide
14%
Nitrogen Mustard
14%
Cyanide
14%
Reducing Agent
14%
Thiosulfate
14%
Arsenite
14%