Biocatalytic imine reduction has been a topic of intense research by the artificial metalloenzyme community in recent years. Artificial constructs, together with natural enzymes, have been engineered to produce chiral amines with high enantioselectivity. This review examines the design of the main classes of artificial imine reductases reported thus far and summarises approaches to enhancing their catalytic performance using complementary methods. Examples of utilising these biocatalysts in vivo or in multi-enzyme cascades have demonstrated the potential that artIREDs can offer, however, at this time their use in biocatalysis remains limited. This review explores the current scope of artIREDs and the strategies used for catalyst improvement...
Cyclic secondary amines can be used to perform enamine and iminium ion catalysis to modify carbonyl...
The possibility of obtaining an efficient artificial imine reductase was investigated by introducing...
Chiral amines have proven to be powerful building blocks for defining new pharmaceutical and agroche...
The synthesis of secondary and tertiary amines through the reductive amination of carbonyl compounds...
Artificial metalloenzymes, resulting from incorporation of a metal cofactor within a host protein, h...
Chiral amine diastereomers are ubiquitous in pharmaceuticals and agrochemicals(1), yet their prepara...
Imine reductases (IREDs) are NADPH-dependent enzymes with significant biocatalytic potential for the...
The synthesis of chiral molecules by asymmetric hydrogenation applying rhodium and ruthenium-based m...
The possibility of obtaining an efficient artificial imine reductase was investigated by introducing...
Current abiotic synthetic methods of obtaining chiral amines often involve conditions that are not c...
Imine reductases (IREDs) have emerged as a valuable new set of biocatalysts for the asymmetric synth...
The imine reductase AoIRED from Amycolatopsis orientalis (Uniprot R4SNK4) catalyzes the NADPH-depend...
The application of biocatalysis in conquering challenging synthesis requires the constant input of n...
Imine reductases (IREDs) offer biocatalytic routes to chiral amines and have a natural preference fo...
SummaryModern tools for enzyme discovery combined with the development of increasingly reliable stra...
Cyclic secondary amines can be used to perform enamine and iminium ion catalysis to modify carbonyl...
The possibility of obtaining an efficient artificial imine reductase was investigated by introducing...
Chiral amines have proven to be powerful building blocks for defining new pharmaceutical and agroche...
The synthesis of secondary and tertiary amines through the reductive amination of carbonyl compounds...
Artificial metalloenzymes, resulting from incorporation of a metal cofactor within a host protein, h...
Chiral amine diastereomers are ubiquitous in pharmaceuticals and agrochemicals(1), yet their prepara...
Imine reductases (IREDs) are NADPH-dependent enzymes with significant biocatalytic potential for the...
The synthesis of chiral molecules by asymmetric hydrogenation applying rhodium and ruthenium-based m...
The possibility of obtaining an efficient artificial imine reductase was investigated by introducing...
Current abiotic synthetic methods of obtaining chiral amines often involve conditions that are not c...
Imine reductases (IREDs) have emerged as a valuable new set of biocatalysts for the asymmetric synth...
The imine reductase AoIRED from Amycolatopsis orientalis (Uniprot R4SNK4) catalyzes the NADPH-depend...
The application of biocatalysis in conquering challenging synthesis requires the constant input of n...
Imine reductases (IREDs) offer biocatalytic routes to chiral amines and have a natural preference fo...
SummaryModern tools for enzyme discovery combined with the development of increasingly reliable stra...
Cyclic secondary amines can be used to perform enamine and iminium ion catalysis to modify carbonyl...
The possibility of obtaining an efficient artificial imine reductase was investigated by introducing...
Chiral amines have proven to be powerful building blocks for defining new pharmaceutical and agroche...