Dehydroquinate synthase (DHQS) is a potential target for the development of novel broad-spectrum antimicrobial drugs, active against both prokaryotes and lower eukaryotes. Structures have been reported for Aspergillus nidulans DHQS (AnDHQS) in complexes with a range of ligands. Analysis of these AnDHQS structures showed that a large-scale domain movement occurs during the normal catalytic cycle, with a complex series of structural elements propagating substrate binding-induced conformational changes away from the active site to distal locations. Compared to corresponding fungal enzymes, DHQS from bacterial species are both mono-functional and significantly smaller. We have therefore determined the structure of Staphylococcus aureus DHQS (Sa...
The structural changes caused by the substitution of the aromatic moiety in (2<i>S</i>)-2-benzyl-3-d...
The structures of enzymes catalyzing the reactions in central metabolic pathways are generally well...
The interactions between the polyanionic ligands phosphate and sulphate and the type II dehydroquina...
In order to investigate systematically substrate and cofactor-induced conformational changes in the ...
Dehydroquinate synthase (DHQS) has long been regarded as a catalytic marvel because of its ability t...
The structure of the type II DHQase from Streptomyces coelicolor has been solved and refined to high...
Dehydroquinate synthase (DHQS) is the N-terminal domain of the pentafunctional AROM protein that cat...
[[abstract]]Dehydroquinate synthase (DHQS) is a nicotinamide adenine dinucleotide (NAD)-dependent en...
Structural, biochemical and computational studies to study substrate binding and the role of the con...
AbstractThe structure of the type II DHQase from Streptomyces coelicolor has been solved and refined...
We are studying two enzymes from the shikimate pathway, dehydroquinate synthase (DHQS) and 5-enolpyr...
Structural and computational studies to explore the WAT1 binding pocket in the structure-based desig...
The shikimate pathway is essential in Mycobacterium tuberculosis and its absence from humans makes t...
The crystal structures of the type II dehydroquinase (DHQase) from Helicobacter pylori in complex wi...
We are studying two enzymes from the shikimate pathway, dehydroquinate synthase (DHQS) and 5-enolpyr...
The structural changes caused by the substitution of the aromatic moiety in (2<i>S</i>)-2-benzyl-3-d...
The structures of enzymes catalyzing the reactions in central metabolic pathways are generally well...
The interactions between the polyanionic ligands phosphate and sulphate and the type II dehydroquina...
In order to investigate systematically substrate and cofactor-induced conformational changes in the ...
Dehydroquinate synthase (DHQS) has long been regarded as a catalytic marvel because of its ability t...
The structure of the type II DHQase from Streptomyces coelicolor has been solved and refined to high...
Dehydroquinate synthase (DHQS) is the N-terminal domain of the pentafunctional AROM protein that cat...
[[abstract]]Dehydroquinate synthase (DHQS) is a nicotinamide adenine dinucleotide (NAD)-dependent en...
Structural, biochemical and computational studies to study substrate binding and the role of the con...
AbstractThe structure of the type II DHQase from Streptomyces coelicolor has been solved and refined...
We are studying two enzymes from the shikimate pathway, dehydroquinate synthase (DHQS) and 5-enolpyr...
Structural and computational studies to explore the WAT1 binding pocket in the structure-based desig...
The shikimate pathway is essential in Mycobacterium tuberculosis and its absence from humans makes t...
The crystal structures of the type II dehydroquinase (DHQase) from Helicobacter pylori in complex wi...
We are studying two enzymes from the shikimate pathway, dehydroquinate synthase (DHQS) and 5-enolpyr...
The structural changes caused by the substitution of the aromatic moiety in (2<i>S</i>)-2-benzyl-3-d...
The structures of enzymes catalyzing the reactions in central metabolic pathways are generally well...
The interactions between the polyanionic ligands phosphate and sulphate and the type II dehydroquina...