Previous Article | Next Article 
J Bacteriol. 1994 June; 176(12): 3638-3645
The Escherichia coli proU promoter element and its contribution to osmotically signaled transcription activation.
J Mellies,
R Brems and
M Villarejo
Section of Microbiology, University of California, Davis 95616.
ABSTRACT
The proU operon of Escherichia coli encodes a high-affinity glycine betaine transport system which is osmotically inducible and enables the organism to recover from the deleterious effects of hyperosmotic shock. Regulation occurs at the transcriptional level. KMnO4 footprinting showed that the preponderance of transcription initiated at a single primary promoter region and that proU transcription activation did not occur differentially at alternate promoters in response to various levels of salt shock. Mutational analysis confirmed the location of the primary promoter and identified an extended -10 region required for promoter activity. Specific nucleotides within the spacer, between position -10 and position -35, were important for maximal expression, but every mutant which retained transcriptional activity remained responsive to osmotic signals. A chromosomal 90-bp minimal promoter fragment fused to lacZ was not significantly osmotically inducible. However, transcription from this fragment was resistant to inhibition by salt shock. A mutation in osmZ, which encodes the DNA-binding protein H-NS, derepressed wild-type proU expression by sevenfold but did not alter expression from the minimal promoter. The current data support a model in which the role of the proU promoter is to function efficiently at high ionic strength while other cis-acting elements receive and respond to the osmotic signal.
J Bacteriol. 1994 June; 176(12): 3638-3645
This article has been cited by other articles:
-
Sand, O., Gingras, M., Beck, N., Hall, C., Trun, N.
(2003). Phenotypic characterization of overexpression or deletion of the Escherichia coli crcA, cspE and crcB genes. Microbiology
149: 2107-2117
[Abstract]
[Full Text]
-
Haack, K. R., Robinson, C. L., Miller, K. J., Fowlkes, J. W., Mellies, J. L.
(2003). Interaction of Ler at the LEE5 (tir) Operon of Enteropathogenic Escherichia coli. Infect. Immun.
71: 384-392
[Abstract]
[Full Text]
-
Weber, A., Jung, K.
(2002). Profiling Early Osmostress-Dependent Gene Expression in Escherichia coli Using DNA Macroarrays. J. Bacteriol.
184: 5502-5507
[Abstract]
[Full Text]
-
Rajkumari, K., Gowrishankar, J.
(2001). In Vivo Expression from the RpoS-Dependent P1 Promoter of the Osmotically Regulated proU Operon in Escherichia coli and Salmonella enterica Serovar Typhimurium: Activation by rho and hns Mutations and by Cold Stress. J. Bacteriol.
183: 6543-6550
[Abstract]
[Full Text]
-
Sedlak, M., Walter, T., Aronson, A.
(2000). Regulation by Overlapping Promoters of the Rate of Synthesis and Deposition into Crystalline Inclusions of Bacillus thuringiensis delta -Endotoxins. J. Bacteriol.
182: 734-741
[Abstract]
[Full Text]
-
Wood, J. M.
(1999). Osmosensing by Bacteria: Signals and Membrane-Based Sensors. Microbiol. Mol. Biol. Rev.
63: 230-262
[Abstract]
[Full Text]
-
Tippner, D., Wagner, R.
(1995). Fluorescence Analysis of the Escherichia coli Transcription Regulator H-NS Reveals Two Distinguishable Complexes Dependent on Binding to Specific or Nonspecific DNA Sites. J. Biol. Chem.
270: 22243-22247
[Abstract]
[Full Text]
-
Kempf, B., Bremer, E.
(1995). OpuA, an Osmotically Regulated Binding Protein-dependent Transport System for the Osmoprotectant Glycine Betaine in Bacillus subtilis. J. Biol. Chem.
270: 16701-16713
[Abstract]
[Full Text]
Copyright © 1994 by the American Society for Microbiology. All rights reserved.