In Xanthomonas axonopodis pv. citri (Xac or X citri), the modA gene codes for a periplasmic protein (ModA) that is capable of binding molybdate and tungstate as part of the ABC-type transporter required for the uptake of micronutrients. In this study, we report the crystallographic structure of the Xac ModA protein with bound molybdate. The Xac ModA structure is similar to orthologs with known three-dimensional structures and consists of two nearly symmetrical domains separated by a hinge region where the oxyanion-binding site lies. Phylogenetic analysis of different ModA orthologs based on sequence alignments revealed three groups of molybdate-binding proteins: bacterial phytopathogens, enterobacteria and soil bacteria. Even though the Mod...
The moaABC operon of Escherichia coli is involved in early steps of the biosynthesis of the molybden...
DNA sequencing of the region upstream from the Azotobacter vinelandii operon (modEABC) that contains...
In microaerophilic or anaerobic environments, Pseudomonas aeruginosa utilizes nitrate reduction for ...
In Xanthomonas axonopodis pv. citri (Xac or X citri), the modA gene codes for a periplasmic protein ...
Bacteria and archaea import molybdenum and tungsten from the environment in the form of the oxyanion...
AbstractBackground: Transport of molybdenum into bacteria involves a high-affinity ABC transporter s...
AbstractModA, the periplasmic-binding protein of the Escherichia coli mod transport system was overe...
AbstractBackground: Periplasmic receptors constitute a diverse class of binding proteins that differ...
Sistemas de transporte tipo ABC são responsáveis pelo transporte de uma grande variedade de substânc...
Abstract Bacteria and archaea import molybdenum and tungsten from the environment in the form of the...
SummarymolA (HI1472) from H. influenzae encodes a periplasmic binding protein (PBP) that delivers su...
molA (HI1472) from H. influenzae encodes a periplasmic binding protein (PBP) that delivers substrate...
The specificity exhibited by the molybdate binding protein ModA for molybdate and tungstate reflects...
Molybdenum (Mo) and tungsten (W) are heavy metals that can be found in the active site of several en...
The molybdenum cofactor Moco forms the catalytic site in all eukaryotic molybdenum enzymes and is ...
The moaABC operon of Escherichia coli is involved in early steps of the biosynthesis of the molybden...
DNA sequencing of the region upstream from the Azotobacter vinelandii operon (modEABC) that contains...
In microaerophilic or anaerobic environments, Pseudomonas aeruginosa utilizes nitrate reduction for ...
In Xanthomonas axonopodis pv. citri (Xac or X citri), the modA gene codes for a periplasmic protein ...
Bacteria and archaea import molybdenum and tungsten from the environment in the form of the oxyanion...
AbstractBackground: Transport of molybdenum into bacteria involves a high-affinity ABC transporter s...
AbstractModA, the periplasmic-binding protein of the Escherichia coli mod transport system was overe...
AbstractBackground: Periplasmic receptors constitute a diverse class of binding proteins that differ...
Sistemas de transporte tipo ABC são responsáveis pelo transporte de uma grande variedade de substânc...
Abstract Bacteria and archaea import molybdenum and tungsten from the environment in the form of the...
SummarymolA (HI1472) from H. influenzae encodes a periplasmic binding protein (PBP) that delivers su...
molA (HI1472) from H. influenzae encodes a periplasmic binding protein (PBP) that delivers substrate...
The specificity exhibited by the molybdate binding protein ModA for molybdate and tungstate reflects...
Molybdenum (Mo) and tungsten (W) are heavy metals that can be found in the active site of several en...
The molybdenum cofactor Moco forms the catalytic site in all eukaryotic molybdenum enzymes and is ...
The moaABC operon of Escherichia coli is involved in early steps of the biosynthesis of the molybden...
DNA sequencing of the region upstream from the Azotobacter vinelandii operon (modEABC) that contains...
In microaerophilic or anaerobic environments, Pseudomonas aeruginosa utilizes nitrate reduction for ...