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Results 1 - 7 of 7
EC Number Protein Variants Commentary Reference
Display the word mapDisplay the reaction diagram Show all sequences 1.14.13.23A400G random mutagenesis, the substitution confers the ability to the mutant enzyme to transform 3-aminophenol to a related substituted catechol 684919
Display the word mapDisplay the reaction diagram Show all sequences 1.14.13.23D416A random mutagenesis, the substitution confers the ability to the mutant enzyme to transform 3-aminophenol to a related substituted catechol 684919
Display the word mapDisplay the reaction diagram Show all sequences 1.14.13.23H135P random mutagenesis, the substitution confers the ability to the mutant enzyme to transform 3-aminophenol to a related substituted catechol 684919
Display the word mapDisplay the reaction diagram Show all sequences 1.14.13.23K326I random mutagenesis, the substitution confers the ability to the mutant enzyme to transform phenol to catechol 684919
Display the word mapDisplay the reaction diagram Show all sequences 1.14.13.23more screening of random mutants from a cosmid library for altered substrate specificities 684919
Display the word mapDisplay the reaction diagram Show all sequences 1.14.13.23V257A a directed evolution study reveals that 3HB4H from Comamonas testosteroni strain GZ39 is considerably active with 4-hydroxybenzoate and that this activity increases in the V257A variant. The same variant slowly converts phenol to catechol, an activity not observed with the wild-type enzyme 764036
Display the word mapDisplay the reaction diagram Show all sequences 1.14.13.23V257A random mutagenesis, the substitution confers the ability to the mutant enzyme to transform phenol to catechol, the mutant is also active with resorcinol, hydroquinone, p-hydroxybenzoate, 2,5-dihydroxybenzoate, 3,4-dihydroxybenzoate, 3-chlorophenol, 4-chlorophenol, 4-chlororesorcinol, and 4-nitrophenol 684919
Results 1 - 7 of 7