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INIS
comparative evaluations
100%
substrates
100%
trichoderma reesei
100%
specificity
100%
tyrosinase
100%
enzymes
83%
oxidation
66%
amines
33%
tyrosine
33%
hydrazones
33%
values
16%
residues
16%
kinetics
16%
peptides
16%
oxygen
16%
fungi
16%
absorption spectra
16%
mushrooms
16%
spectrophotometry
16%
catechol
16%
Keyphrases
Trichoderma Reesei
100%
Tyrosinase
100%
Substrate Specificity
100%
Agaricus Bisporus
100%
Amine Group
33%
3-methyl-2-benzothiazolinone Hydrazone
33%
Catalyzed Reaction
33%
Carboxyl Group
16%
Filamentous Fungi
16%
Absorption Spectra
16%
Km Value
16%
Consumption Measurement
16%
Oxygen Consumption
16%
Nucleophilic
16%
Tyrosine
16%
Extracellular Enzymes
16%
Kinetic Constants
16%
Intracellular Enzymes
16%
Tripeptide
16%
Lag Period
16%
Monophenols
16%
Catechol
16%
UV-visible
16%
Product Patterns
16%
Tyrosine Residue
16%
Edible mushroom
16%
Hider
16%
Hydrocaffeic Acid
16%
Carboxylic Group
16%
Pharmacology, Toxicology and Pharmaceutical Science
Substrate Specificity
100%
Agaricus bisporus
100%
Trichoderma reesei
100%
Tyrosinase
100%
Filamentous Fungus
16%
Edible Mushroom
16%
2,3 Dihydroxybenzoic Acid
16%
Cell Enzyme
16%
Carboxyl Group
16%
Dihydrocaffeic Acid
16%
Tripeptide
16%
Agricultural and Biological Sciences
Substrate Specificity
100%
Trichoderma reesei
100%
Tyrosinase
100%
Agaricus bisporus
100%
Tripeptide
16%
Chemistry
Substrate Specificity
100%
Hydrazone
66%
Catechol
33%
Km
33%
Tyrosine Residue
33%
Absorption Spectra
33%
Tripeptide
33%