Tryptophan 7-halogenase catalyzes chlorination of free tryptophan to 7-chlorotryptophan, which is the first step in the antibiotic pyrrolnitrin biosynthesis. Many biologically and pharmaceutically active natural products contain chlorine and thus, an understanding of the mechanism of its introduction into organic molecules is important. Whilst enzyme-catalyzed chlorination is accomplished with ease, it remains a difficult task for the chemists. Therefore, utilizing enzymes in the synthesis of chlorinated organic compounds is important, and providing atomistic mechanistic insights about the reaction mechanism of tryptophan 7-halogenase is vital and timely. In this work, we examined a mechanism for the reaction of tryptophan chlorination, per...
The hydantoin moiety is an important pharmacore, and when halogenated, hydantoin derivatives act as ...
Flavin-dependent halogenases (FDHs) catalyze selective halogenation of electron-rich aromatic compou...
Neubauer P, Pienkny S, Wessjohann LA, Brandt W, Sewald N. Predicting the substrate scope of the flav...
Tryptophan 7-halogenase catalyzes chlorination of free tryptophan to 7-chlorotryptophan, which is th...
Tryptophan 7-halogenase catalyzes chlorination of free tryptophan to 7-chlorotryptophan, which is th...
Many natural organic compounds with pharmaceutical applications, including antibiotics (chlortetracy...
The regioselectively controlled introduction of chlorine into organic molecules is an important biol...
Many natural organic compounds with pharmaceutical applications, including antibiotics (chlortetracy...
(Chemical Equation Presented) It takes two: Both a lysine and a glutamate residue in the active site...
Chlorinated natural products include vancomycin and cryptophycin A. Their biosynthesis involves regi...
Chlorinated natural products include vancomycin and cryptophycin A. Their biosynthesis involves regi...
To rationally engineer the substrate scope and selectivity of flavin-dependent halogenases (FDHs), i...
Moritzer A-C, Minges H, Prior T, Frese M, Sewald N, Niemann H. Structure-based switch of regioselect...
In this work we present the first computational study on the hectochlorin biosynthesis enzyme HctB, ...
Chloroperoxidase (CPO) is a potential biocatalyst for use in asymmetric synthesis. The mechanisms of...
The hydantoin moiety is an important pharmacore, and when halogenated, hydantoin derivatives act as ...
Flavin-dependent halogenases (FDHs) catalyze selective halogenation of electron-rich aromatic compou...
Neubauer P, Pienkny S, Wessjohann LA, Brandt W, Sewald N. Predicting the substrate scope of the flav...
Tryptophan 7-halogenase catalyzes chlorination of free tryptophan to 7-chlorotryptophan, which is th...
Tryptophan 7-halogenase catalyzes chlorination of free tryptophan to 7-chlorotryptophan, which is th...
Many natural organic compounds with pharmaceutical applications, including antibiotics (chlortetracy...
The regioselectively controlled introduction of chlorine into organic molecules is an important biol...
Many natural organic compounds with pharmaceutical applications, including antibiotics (chlortetracy...
(Chemical Equation Presented) It takes two: Both a lysine and a glutamate residue in the active site...
Chlorinated natural products include vancomycin and cryptophycin A. Their biosynthesis involves regi...
Chlorinated natural products include vancomycin and cryptophycin A. Their biosynthesis involves regi...
To rationally engineer the substrate scope and selectivity of flavin-dependent halogenases (FDHs), i...
Moritzer A-C, Minges H, Prior T, Frese M, Sewald N, Niemann H. Structure-based switch of regioselect...
In this work we present the first computational study on the hectochlorin biosynthesis enzyme HctB, ...
Chloroperoxidase (CPO) is a potential biocatalyst for use in asymmetric synthesis. The mechanisms of...
The hydantoin moiety is an important pharmacore, and when halogenated, hydantoin derivatives act as ...
Flavin-dependent halogenases (FDHs) catalyze selective halogenation of electron-rich aromatic compou...
Neubauer P, Pienkny S, Wessjohann LA, Brandt W, Sewald N. Predicting the substrate scope of the flav...