The ArgR regulatory protein, a helper to the anaerobic regulator ANR during transcriptional activation of the arcD promoter in Pseudomonas aeruginosa.

Details

Serval ID
serval:BIB_CD7DD2A5C092
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
The ArgR regulatory protein, a helper to the anaerobic regulator ANR during transcriptional activation of the arcD promoter in Pseudomonas aeruginosa.
Journal
Journal of Bacteriology
Author(s)
Lu C.D., Winteler H., Abdelal A., Haas D.
ISSN
0021-9193 (Print)
ISSN-L
0021-9193
Publication state
Published
Issued date
1999
Volume
181
Number
8
Pages
2459-2464
Language
english
Abstract
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'-TGACGC-3', which deviated in only 1 base from the common sequence motif 5'-TGTCGC-3' found in other ArgR binding sites of P. aeruginosa. Furthermore, an alignment of all known ArgR binding sites confirmed that they consist of two directly repeated half-sites. In the absence of ANR, arginine did not induce the arc operon, suggesting that ArgR alone does not activate the arcD promoter. According to a model proposed, ArgR makes physical contact with ANR and thereby facilitates initiation of arc transcription.
Keywords
Adenosine Triphosphate/biosynthesis, Amino Acid Transport Systems, Anaerobiosis, Antiporters/biosynthesis, Antiporters/genetics, Arginine/pharmacology, Bacterial Proteins/biosynthesis, Bacterial Proteins/genetics, Base Sequence, Binding Sites, DNA-Binding Proteins, Gene Expression Regulation, Bacterial, Models, Genetic, Molecular Sequence Data, Promoter Regions, Genetic, Protein Binding, Pseudomonas aeruginosa/drug effects, Pseudomonas aeruginosa/genetics, Repressor Proteins/metabolism, Trans-Activators, Transcription Factors/metabolism
Pubmed
Web of science
Create date
25/01/2008 18:01
Last modification date
20/08/2019 16:48
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