The formylglycine-generating enzyme (FGE) recognizes proteins with a specific cysteine-containing six-amino-acid motif and converts this cysteine residue into formylglycine. The resulting aldehyde function provides a unique handle for selective protein labeling. We have identified two mutations in FGE from Thermomonospora curvata that increase this catalytic efficiency more than 40-fold. The resulting activity and stability, as well as its ease of recombinant production, make this FGE variant a practical reagent for in vitro protein engineering
Dierks T, Lecca MR, Schlotterhose P, Schmidt B, Figura von K. Sequence determinants directing conver...
Roeser D, Preusser-Kunze A, Schmidt B, et al. A general binding mechanism for all human sulfatases b...
Knaust A, Schmidt B, Dierks T, Bulow von R, Figura von K. Residues critical for formylglycine format...
The formylglycine-generating enzyme (FGE) recognizes proteins with a specific cysteine-containing si...
Krüger T, Dierks T, Sewald N. Formylglycine-generating enzymes for site-specific bioconjugation. BIO...
The ability of enzymes to make rapid the conversion between chemical entities represents an enabling...
Frese M-A, Dierks T. Formylglycine Aldehyde Tag-Protein Engineering through a Novel Post-translation...
Formylglycine generating enzyme (FGE) is conserved through most organisms for the post-translational...
Mariappan M, Gande SL, Radhakrishnan K, Schmidt B, Dierks T, von Figura K. The non-catalytic N-termi...
Krüger T, Weiland S, Boschanski M, et al. Conversion of Serine-Type Aldehyde Tags by the Radical SAM...
Ennemann E, Radhakrishnan K, Mariappan M, et al. Proprotein Convertases Process and Thereby Inactiva...
Preusser-Kunze A, Mariappan M, Schmidt B, et al. Molecular characterization of the human C alpha-for...
Formylglycine-generating enzymes can selectively recognize and oxidize cysteine residues within the ...
Peng J, Alam S, Radhakrishnan K, et al. Eukaryotic formylglycine-generating enzyme catalyses a monoo...
Janson N, Krüger T, Karsten L, et al. Bifunctional Reagents for Formylglycine Conjugation: Pitfalls ...
Dierks T, Lecca MR, Schlotterhose P, Schmidt B, Figura von K. Sequence determinants directing conver...
Roeser D, Preusser-Kunze A, Schmidt B, et al. A general binding mechanism for all human sulfatases b...
Knaust A, Schmidt B, Dierks T, Bulow von R, Figura von K. Residues critical for formylglycine format...
The formylglycine-generating enzyme (FGE) recognizes proteins with a specific cysteine-containing si...
Krüger T, Dierks T, Sewald N. Formylglycine-generating enzymes for site-specific bioconjugation. BIO...
The ability of enzymes to make rapid the conversion between chemical entities represents an enabling...
Frese M-A, Dierks T. Formylglycine Aldehyde Tag-Protein Engineering through a Novel Post-translation...
Formylglycine generating enzyme (FGE) is conserved through most organisms for the post-translational...
Mariappan M, Gande SL, Radhakrishnan K, Schmidt B, Dierks T, von Figura K. The non-catalytic N-termi...
Krüger T, Weiland S, Boschanski M, et al. Conversion of Serine-Type Aldehyde Tags by the Radical SAM...
Ennemann E, Radhakrishnan K, Mariappan M, et al. Proprotein Convertases Process and Thereby Inactiva...
Preusser-Kunze A, Mariappan M, Schmidt B, et al. Molecular characterization of the human C alpha-for...
Formylglycine-generating enzymes can selectively recognize and oxidize cysteine residues within the ...
Peng J, Alam S, Radhakrishnan K, et al. Eukaryotic formylglycine-generating enzyme catalyses a monoo...
Janson N, Krüger T, Karsten L, et al. Bifunctional Reagents for Formylglycine Conjugation: Pitfalls ...
Dierks T, Lecca MR, Schlotterhose P, Schmidt B, Figura von K. Sequence determinants directing conver...
Roeser D, Preusser-Kunze A, Schmidt B, et al. A general binding mechanism for all human sulfatases b...
Knaust A, Schmidt B, Dierks T, Bulow von R, Figura von K. Residues critical for formylglycine format...