A highly combinatorial structure-based protein engineering method for obtaining enantioselectivity is reported that results in a thorough modification of the substrate binding pocket of Candida antarctica lipase A (CALA). Nine amino acid residues surrounding the entire pocket were simultaneously mutated, contributing to a reshaping of the substrate pocket to give increased enantioselectivity and activity for a sterically demanding substrate. This approach seems to be powerful for developing enantioselectivity when a complete reshaping of the active site is required. Screening toward ibuprofen ester 1, a substrate for which previously used methods had failed, gave variants with a significantly increased enantioselectivity and activity. Wild-...
In order to make use of enzymes in unnatural applications more efficiently, novel enzymes have to be...
Lipases are successfully applied in enantioselective biocatalysis. Most lipases contain a lid domain...
SummaryLipases are successfully applied in enantioselective biocatalysis. Most lipases contain a lid...
A highly combinatorial structure-based protein engineering method for obtaining enantioselectivity i...
Enzymes are gaining increasing importance as catalysts for selective transformations in organic synt...
The use of enzymes as catalysts in organic synthesis constitutes an attractive alternative to conven...
Enzymes are attractive catalysts in organic synthesis since they are efficient, selective and enviro...
International audience[a] ((Dedication, optional)) Lipase from Burkholderia cepacia (BCL) has proven...
This thesis describes the use of rational redesign to modify the properties of the enzyme Candida an...
Enzymatic stereodivergent synthesis to access all possible product stereoisomers bearing multiple st...
Candida antarctica lipase B (CALB) is a robust and easily expressed enzyme used widely in academic a...
Researchers use enzymes for enantio- and regioselective reactions because of their high selectivity...
Background: The biocatalytic production of enantiopure compounds is of steadily increasing importanc...
Recombinant Candida antarctica lipase B was successfullyproduced in the methylotropic yeast Pichia p...
International audienceEnzyme-catalyzed enantiomer discrimination is still a great challenge for the ...
In order to make use of enzymes in unnatural applications more efficiently, novel enzymes have to be...
Lipases are successfully applied in enantioselective biocatalysis. Most lipases contain a lid domain...
SummaryLipases are successfully applied in enantioselective biocatalysis. Most lipases contain a lid...
A highly combinatorial structure-based protein engineering method for obtaining enantioselectivity i...
Enzymes are gaining increasing importance as catalysts for selective transformations in organic synt...
The use of enzymes as catalysts in organic synthesis constitutes an attractive alternative to conven...
Enzymes are attractive catalysts in organic synthesis since they are efficient, selective and enviro...
International audience[a] ((Dedication, optional)) Lipase from Burkholderia cepacia (BCL) has proven...
This thesis describes the use of rational redesign to modify the properties of the enzyme Candida an...
Enzymatic stereodivergent synthesis to access all possible product stereoisomers bearing multiple st...
Candida antarctica lipase B (CALB) is a robust and easily expressed enzyme used widely in academic a...
Researchers use enzymes for enantio- and regioselective reactions because of their high selectivity...
Background: The biocatalytic production of enantiopure compounds is of steadily increasing importanc...
Recombinant Candida antarctica lipase B was successfullyproduced in the methylotropic yeast Pichia p...
International audienceEnzyme-catalyzed enantiomer discrimination is still a great challenge for the ...
In order to make use of enzymes in unnatural applications more efficiently, novel enzymes have to be...
Lipases are successfully applied in enantioselective biocatalysis. Most lipases contain a lid domain...
SummaryLipases are successfully applied in enantioselective biocatalysis. Most lipases contain a lid...