EC Number   |
BRENDA No.   |
Title   |
Journal   |
Volume   |
Pages   |
Year   |
Organism   |
PubMed ID   |
|---|
 5.4.3.6 | 714722 |
Engineering of an enantioselective tyrosine aminomutase by mutation of a single active site residue in phenylalanine aminomutase |
Chem. Commun. (Camb. ) |
46 |
8157-8159 |
2010 |
Cupriavidus crocatus |
20924508 |
 5.4.3.6 | 650190 |
Kinetic analysis of the 4-methylideneimidazole-5-one-containing tyrosine aminomutase in enediyne antitumor antibiotic C-1027 biosynthesis |
Biochemistry |
42 |
12708-12718 |
2003 |
Streptomyces globisporus |
14580219 |
 5.4.3.6 | 747104 |
Mutation of aryl binding pocket residues results in an unexpected activity switch in an Oryza sativa tyrosine aminomutase |
Biochemistry |
55 |
3497-3503 |
2016 |
Oryza sativa |
26709535 |
 5.4.3.6 | 714481 |
Probing the active site of MIO-dependent aminomutases, key catalysts in the biosynthesis of beta-amino acids incorporated in secondary metabolites |
Biopolymers |
93 |
802-810 |
2010 |
Streptomyces globisporus |
20577998 |
 5.4.3.6 | 678295 |
The structure of L-tyrosine 2,3-aminomutase from the C-1027 enediyne antitumor antibiotic biosynthetic pathway |
Biochemistry |
46 |
7205-7214 |
2007 |
Streptomyces globisporus |
17516659 |
 5.4.3.6 | 748914 |
The tyrosine aminomutase TAM1 is required for beta-tyrosine biosynthesis in rice |
Plant Cell |
27 |
1265-1278 |
2015 |
Oryza sativa Japonica Group |
25901084 |
 5.4.3.6 | 747148 |
Understanding which residues of the active site and loop structure of a tyrosine aminomutase define its mutase and lyase activities |
Biochemistry |
57 |
3503-3514 |
2018 |
Oryza sativa |
29757631 |