N-hydroxylating flavin-dependent monooxygenases (FMOs) are involved in the biosynthesis of hydroxamate siderophores, playing a key role in microbial virulence. Herein, we report the first structural and kinetic characterization of a novel alkyl diamine N-hydroxylase DesB from Streptomyces sviceus (SsDesB). This enzyme catalyzes the first committed step in the biosynthesis of desferrioxamine B, a clinical drug used to treat iron overload disorders. X-ray crystal structures of the SsDesB holoenzyme with FAD and the ternary complex with bound NADP+ were solved at 2.86 Å and 2.37 Å resolution, respectively, providing a structural view of the active site environment. SsDesB crystallized as a tetramer and the structure of the individual protomers...
The bacterial natural product desferrioxamine B (DFOB) can form highly stable complexes with a range...
Baeyer-Villiger monooxygenases (BVMOs) and N-hydroxylating monooxygenases (NMO) belong to the Class-...
Pathogenic bacteria are becoming increasingly antibiotic resistant. For this reason, the development...
N-hydroxylating flavin-dependent monooxygenases (FMOs) are involved in the biosynthesis of hydroxama...
The N-hydroxylating flavoprotein monooxygenases are siderophore biosynthetic enzymes that catalyze t...
Hydroxamate groups play key roles in the biological function of diverse natural products. Important ...
The experiments in this thesis sought to expand the chemical space of desferrioxamine type sideropho...
N-Hydroxylating monooxygenases are involved in the biosynthesis of iron-chelating hydroxamate-contai...
The siderophore desferrioxamine B (DFOB, 1) native to Streptomyces pilosus is biosynthesized by the ...
Hydroxamate groups play key roles in the biological function of diverse natural products. Important ...
As the number of multi-drug resistant bacterial infections continue to rise, the development of new ...
Desferrioxamine B (DFOB) is a siderophore native to Streptomyces pilosus biosynthesised by the DesAB...
Amino groups derived from naturally abundant amino acids or (di)amines can be used as “shuttles” in ...
SidA from the human pathogen Aspergillus fumigatus catalyzes the generation of N(5)-hydroxyornithine...
Microsomal N,S-monooxygenase (E.C. 1.14.13.8) is a flavo-protein monooxygenase present in liver micr...
The bacterial natural product desferrioxamine B (DFOB) can form highly stable complexes with a range...
Baeyer-Villiger monooxygenases (BVMOs) and N-hydroxylating monooxygenases (NMO) belong to the Class-...
Pathogenic bacteria are becoming increasingly antibiotic resistant. For this reason, the development...
N-hydroxylating flavin-dependent monooxygenases (FMOs) are involved in the biosynthesis of hydroxama...
The N-hydroxylating flavoprotein monooxygenases are siderophore biosynthetic enzymes that catalyze t...
Hydroxamate groups play key roles in the biological function of diverse natural products. Important ...
The experiments in this thesis sought to expand the chemical space of desferrioxamine type sideropho...
N-Hydroxylating monooxygenases are involved in the biosynthesis of iron-chelating hydroxamate-contai...
The siderophore desferrioxamine B (DFOB, 1) native to Streptomyces pilosus is biosynthesized by the ...
Hydroxamate groups play key roles in the biological function of diverse natural products. Important ...
As the number of multi-drug resistant bacterial infections continue to rise, the development of new ...
Desferrioxamine B (DFOB) is a siderophore native to Streptomyces pilosus biosynthesised by the DesAB...
Amino groups derived from naturally abundant amino acids or (di)amines can be used as “shuttles” in ...
SidA from the human pathogen Aspergillus fumigatus catalyzes the generation of N(5)-hydroxyornithine...
Microsomal N,S-monooxygenase (E.C. 1.14.13.8) is a flavo-protein monooxygenase present in liver micr...
The bacterial natural product desferrioxamine B (DFOB) can form highly stable complexes with a range...
Baeyer-Villiger monooxygenases (BVMOs) and N-hydroxylating monooxygenases (NMO) belong to the Class-...
Pathogenic bacteria are becoming increasingly antibiotic resistant. For this reason, the development...