Pseudomonas aeruginosa, when deprived of oxygen, generates ATP from arginine catabolism by enzymes of the arginine deiminase pathway, encoded by the arcDABC operon. Under conditions of low oxygen tension, the transcriptional activator ANR binds to a site centered 41.5 bp upstream of the arcD transcriptional start. ANR-mediated anaerobic induction was enhanced two- to threefold by extracellular arginine. This arginine effect depended, in trans, on the transcriptional regulator ArgR and, in cis, on an ArgR binding site centered at -73.5 bp in the arcD promoter. Binding of purified ArgR protein to this site was demonstrated by electrophoretic mobility shift assays and DNase I footprinting. This ArgR recognition site contained a sequence, 5'-TG...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
The anaerobic transcriptional regulator ANR induces the arginine deiminase and denitrification pathw...
A mutant of Pseudomonas aeruginosa was characterized which could not grow anaerobically with nitrate...
aeruginosa. in the arcDABC operon of Pseudomonas Anaerobic regulation of transcription initiatio
Arginine utilization in P. aeruginosa as the source of carbon, nitrogen, and energy is controlled by...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
We identified in all sequenced Staphylococcus aureus genomes a single ORF that is strongly similar t...
The anaerobically inducible arcDABC operon encodes the enzymes of the arginine deiminase pathway in ...
Arginine anaerobic catabolism occurs in Bacillus licheniformis through the arginine deiminase pathwa...
The anaerobic metabolism of the opportunistic pathogen Pseudomonas aeruginosa is important for growt...
Pseudomonas aeruginosa PAO was able to grow in the absence of exogenous terminal electron acceptors,...
P. aeruginosa possesses two aerotaxis transducers, Aer and Aer-2. A deletion-insetion mutant of the ...
The arginine deiminase pathway enables Bacillus licheniformis to grow anaerobically on arginine. Bot...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
The anaerobic transcriptional regulator ANR induces the arginine deiminase and denitrification pathw...
A mutant of Pseudomonas aeruginosa was characterized which could not grow anaerobically with nitrate...
aeruginosa. in the arcDABC operon of Pseudomonas Anaerobic regulation of transcription initiatio
Arginine utilization in P. aeruginosa as the source of carbon, nitrogen, and energy is controlled by...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
We identified in all sequenced Staphylococcus aureus genomes a single ORF that is strongly similar t...
The anaerobically inducible arcDABC operon encodes the enzymes of the arginine deiminase pathway in ...
Arginine anaerobic catabolism occurs in Bacillus licheniformis through the arginine deiminase pathwa...
The anaerobic metabolism of the opportunistic pathogen Pseudomonas aeruginosa is important for growt...
Pseudomonas aeruginosa PAO was able to grow in the absence of exogenous terminal electron acceptors,...
P. aeruginosa possesses two aerotaxis transducers, Aer and Aer-2. A deletion-insetion mutant of the ...
The arginine deiminase pathway enables Bacillus licheniformis to grow anaerobically on arginine. Bot...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...