Phenylalanine aminomutase from Taxus chinensis (TchPAM) is employed in the biosynthesis of the widely used antitumor drug paclitaxel. TchPAM has received substantial attention due to its strict enantioselectivity towards (R)-β-phenylalanine, in contrast to the bacterial enzymes classified as EC 5.4.3.11 which are (S)-selective for this substrate. However, the understanding of the isomerization mechanism of the reorientation and rearrangement reactions in TchPAM might support and promote further research on expanding the scope of the substrate and thus the establishment of large-scale production of potential synthesis for drug development. Upon conservation analysis, computational simulation, and mutagenesis experiments, we report a mutant f...
Lignin is an underutilized sustainable source of aromatic compounds. To valorize the low-value ligni...
SummaryAromatic amino acid ammonia-lyases catalyze the deamination of L-His, L-Phe, and L-Tyr, yield...
Deciphering the structural features that functionally separate ammonia lyases from aminomutases is o...
Phenylalanine aminomutase from Taxus chinensis (TchPAM) is employed in the biosynthesis of the widel...
The phenylalanine aminomutase (PAM) from Taxus chinensis catalyses the conversion of α-phenylalanine...
Lignin is an underutilized sustainable source of aromatic compounds. To valorize the low-value ligni...
By replacing a single active-site residue Cys107 with Ser in phenylalanine aminomutase (PAM), the en...
SummaryTyrosine ammonia-lyase (TAL) is a recently described member of the aromatic amino acid lyase ...
ω-Transaminases (ω-TA) are attractive biocatalysts for the production of chiral amines from prochira...
β-Amino acids are biologically active compounds of interest in medicinal chemistry. A class I lyase-...
Phenylalanine-2,3-aminomutase (PAM) from Taxus chinensis, a 4-methylidene-imidazole-5-one (MIO)-depe...
Phenylalanine-2,3-aminomutase (PAM) from <i>Taxus chinensis</i>, a 4-methylidene-imidazole-5-one (MI...
Lignin is an underutilized sustainable source of aromatic compounds. To valorize the low-value ligni...
SummaryAromatic amino acid ammonia-lyases catalyze the deamination of L-His, L-Phe, and L-Tyr, yield...
Deciphering the structural features that functionally separate ammonia lyases from aminomutases is o...
Phenylalanine aminomutase from Taxus chinensis (TchPAM) is employed in the biosynthesis of the widel...
The phenylalanine aminomutase (PAM) from Taxus chinensis catalyses the conversion of α-phenylalanine...
Lignin is an underutilized sustainable source of aromatic compounds. To valorize the low-value ligni...
By replacing a single active-site residue Cys107 with Ser in phenylalanine aminomutase (PAM), the en...
SummaryTyrosine ammonia-lyase (TAL) is a recently described member of the aromatic amino acid lyase ...
ω-Transaminases (ω-TA) are attractive biocatalysts for the production of chiral amines from prochira...
β-Amino acids are biologically active compounds of interest in medicinal chemistry. A class I lyase-...
Phenylalanine-2,3-aminomutase (PAM) from Taxus chinensis, a 4-methylidene-imidazole-5-one (MIO)-depe...
Phenylalanine-2,3-aminomutase (PAM) from <i>Taxus chinensis</i>, a 4-methylidene-imidazole-5-one (MI...
Lignin is an underutilized sustainable source of aromatic compounds. To valorize the low-value ligni...
SummaryAromatic amino acid ammonia-lyases catalyze the deamination of L-His, L-Phe, and L-Tyr, yield...
Deciphering the structural features that functionally separate ammonia lyases from aminomutases is o...