Racemases and epimerases catalyse changes in the stereochemical configurations of chiral centres and are of interest as model enzymes and as biotechnological tools. They also occupy pivotal positions within metabolic pathways and, hence, many of them are important drug targets. This review summarises the catalytic mechanisms of PLP-dependent, enolase family and cofactor-independent racemases and epimerases operating by a deprotonation/reprotonation (1,1-proton transfer) mechanism and methods for measuring their catalytic activity. Strategies for inhibiting these enzymes are reviewed, as are specific examples of inhibitors. Rational design of inhibitors based on substrates has been extensively explored but there is considerable scope for dev...
Amine transaminases are important biocatalysts for the synthesis of chiral primary amines. Unlike ma...
The research in Chapters 1 and 2 focuses on developing inactivators of pyridoxal-5’-phosphate (PLP) ...
Epimerases are enzymes that invert the stereochemistry at a stereogenic center in a molecule with t...
Racemases and epimerases catalyse changes in the stereochemical configurations of chiral centres and...
Mandelate racemase (MR) from Pseudomonas putida catalyzes the Mg2+-dependent, 1,1-proton transfer re...
Mandelate racemase (MR) from Pseudomonas putida catalyzes the Mg2+-dependent, 1,1-proton transfer re...
Enzymes are biological catalysts which greatly accelerate the rate of chemical reactions with remark...
Programs of drug discovery generally exploit one enantiomer of a chiral compound for lead developmen...
Programs of drug discovery generally exploit one enantiomer of a chiral compound for lead developmen...
Programs of drug discovery generally exploit one enantiomer of a chiral compound for lead developmen...
D-amino acids are essential components of the bacterial cell wall and play notable roles in microbio...
In the enzymatic racemization of L and D amino acids, the coenzyme pyridoxal phosphate (PLP) forms a...
A computational study of the two possible inhibition mechanisms of rhodesain cysteine protease by th...
An alcohol dehydrogenase from Clostridium acetobutylicum (CaADH) recently reported by our lab and de...
Mandelate racemase (MR), a member of the enolase superfamily, catalyzes the Mg2+-dependent interconv...
Amine transaminases are important biocatalysts for the synthesis of chiral primary amines. Unlike ma...
The research in Chapters 1 and 2 focuses on developing inactivators of pyridoxal-5’-phosphate (PLP) ...
Epimerases are enzymes that invert the stereochemistry at a stereogenic center in a molecule with t...
Racemases and epimerases catalyse changes in the stereochemical configurations of chiral centres and...
Mandelate racemase (MR) from Pseudomonas putida catalyzes the Mg2+-dependent, 1,1-proton transfer re...
Mandelate racemase (MR) from Pseudomonas putida catalyzes the Mg2+-dependent, 1,1-proton transfer re...
Enzymes are biological catalysts which greatly accelerate the rate of chemical reactions with remark...
Programs of drug discovery generally exploit one enantiomer of a chiral compound for lead developmen...
Programs of drug discovery generally exploit one enantiomer of a chiral compound for lead developmen...
Programs of drug discovery generally exploit one enantiomer of a chiral compound for lead developmen...
D-amino acids are essential components of the bacterial cell wall and play notable roles in microbio...
In the enzymatic racemization of L and D amino acids, the coenzyme pyridoxal phosphate (PLP) forms a...
A computational study of the two possible inhibition mechanisms of rhodesain cysteine protease by th...
An alcohol dehydrogenase from Clostridium acetobutylicum (CaADH) recently reported by our lab and de...
Mandelate racemase (MR), a member of the enolase superfamily, catalyzes the Mg2+-dependent interconv...
Amine transaminases are important biocatalysts for the synthesis of chiral primary amines. Unlike ma...
The research in Chapters 1 and 2 focuses on developing inactivators of pyridoxal-5’-phosphate (PLP) ...
Epimerases are enzymes that invert the stereochemistry at a stereogenic center in a molecule with t...