Artificial enzymes utilizing the genetically encoded non-proteinogenic amino acid p-aminophenylalanine (pAF) as a catalytic residue are able to react with carbonyl compounds through an iminium ion mechanism to promote reactions that have no equivalent in nature. Herein, we report an in vivo biocatalytic cascade that is augmented with such an artificial enzyme-catalysed new-to-nature reaction. The artificial enzyme in this study is a pAF-containing evolved variant of the lactococcal multidrug-resistance regulator, designated LmrR_V15pAF_RMH, which efficiently converts benzaldehyde derivatives produced in vivo into the corresponding hydrazone products inside E. coli cells. These in vivo biocatalytic cascades comprising an artificial-enzyme-ca...
Artificial enzymes, which are hybrids of proteins with abiological catalytic groups, have emerged as...
Creating designer enzymes with the ability to catalyse abiological transformations is a formidable c...
Creating designer enzymes with the ability to catalyse abiological transformations is a formidable c...
Artificial enzymes utilizing the genetically encoded non-proteinogenic amino acid p-aminophenylalani...
Artificial enzymes utilizing the genetically encoded non-proteinogenic amino acid p-aminophenylalani...
Artificial enzymes utilizing the genetically encoded non-proteinogenic amino acid p-aminophenylalani...
A key challenge of integrating non-natural catalytic residues into proteins to design artificial enz...
A key challenge of integrating non-natural catalytic residues into proteins to design artificial enz...
There is a growing interest in implementing organometallic catalysis in the context of synthetic bio...
There is a growing interest in implementing organometallic catalysis in the context of synthetic bio...
Residing at the interface of chemistry and biotechnology, artificial metalloenzymes (ArMs) offer an ...
Artificial enzymes, which are hybrids of proteins with abiological catalytic groups, have emerged as...
Creating designer enzymes with the ability to catalyse abiological transformations is a formidable c...
Creating designer enzymes with the ability to catalyse abiological transformations is a formidable c...
Artificial enzymes, which are hybrids of proteins with abiological catalytic groups, have emerged as...
Artificial enzymes, which are hybrids of proteins with abiological catalytic groups, have emerged as...
Creating designer enzymes with the ability to catalyse abiological transformations is a formidable c...
Creating designer enzymes with the ability to catalyse abiological transformations is a formidable c...
Artificial enzymes utilizing the genetically encoded non-proteinogenic amino acid p-aminophenylalani...
Artificial enzymes utilizing the genetically encoded non-proteinogenic amino acid p-aminophenylalani...
Artificial enzymes utilizing the genetically encoded non-proteinogenic amino acid p-aminophenylalani...
A key challenge of integrating non-natural catalytic residues into proteins to design artificial enz...
A key challenge of integrating non-natural catalytic residues into proteins to design artificial enz...
There is a growing interest in implementing organometallic catalysis in the context of synthetic bio...
There is a growing interest in implementing organometallic catalysis in the context of synthetic bio...
Residing at the interface of chemistry and biotechnology, artificial metalloenzymes (ArMs) offer an ...
Artificial enzymes, which are hybrids of proteins with abiological catalytic groups, have emerged as...
Creating designer enzymes with the ability to catalyse abiological transformations is a formidable c...
Creating designer enzymes with the ability to catalyse abiological transformations is a formidable c...
Artificial enzymes, which are hybrids of proteins with abiological catalytic groups, have emerged as...
Artificial enzymes, which are hybrids of proteins with abiological catalytic groups, have emerged as...
Creating designer enzymes with the ability to catalyse abiological transformations is a formidable c...
Creating designer enzymes with the ability to catalyse abiological transformations is a formidable c...