proP of Escherichia coli encodes an active transport system for proline and glycine betaine which is activated by both hyperosmolarity and amino acid-limited growth. proP DNA sequences far upstream from the trans-lational start site are strongly homologous to the promoter of proU, an operon that specifies another osmo-regulated glycine betaine transport system. Mutation and deletion analysis of proP and primer extension experiments established that this promoter, P1, was responsible for proP’s strong expression in minimal medium and its response to osmotic signals. When cells were grown in complex medium, expression from a proP-lacZ fusion was induced three- to fourfold as growth slowed and cells entered stationary phase. Station-ary-phase ...
AbstractTransporter ProP of Escherichia coli, a member of the major facilitator superfamily, mediate...
Adaptation to osmotic stress alters the amounts of several specific proteins in the Escherichia coli...
Bacillus subtilis is known to accumulate large amounts of the compatible solute proline via de novo ...
The Escherichia coli proU operon encodes a high-affinity, binding-protein-dependent transport system...
Expression of the Escherichia coli proU operon, which encodes an efficient uptake system for the osm...
Transcription of the proU operon in Escherichia coli is induced several hundredfold upon growth of c...
Transcription of the proU operon in Escherichia coli is induced several hundredfold upon growth of c...
Summary. Glycine betaine, which functions as an osmopro-tectant, is accumulated to high intracellula...
Environmental osmotic strength is one of the influential factors controlling how well an organism ca...
Glycine betaine, which functions as an osmoprotectant, is accumulated to high intracellular concentr...
The proU operon in enterobacteria encodes a binding-protein-dependent transporter for the active upt...
Transcription of theproU operon ofEscherichia coli is induced several hundred-fold upon growth at el...
Unlike the 70-controlled P2 promoter for the osmotically regulated proU operon of Escherichia coli a...
The growth of Escherichia coli strains in media having elevated osmolarity was promoted in the prese...
The proU locus encodes an osmotically inducible glycine betaine transport system that is important i...
AbstractTransporter ProP of Escherichia coli, a member of the major facilitator superfamily, mediate...
Adaptation to osmotic stress alters the amounts of several specific proteins in the Escherichia coli...
Bacillus subtilis is known to accumulate large amounts of the compatible solute proline via de novo ...
The Escherichia coli proU operon encodes a high-affinity, binding-protein-dependent transport system...
Expression of the Escherichia coli proU operon, which encodes an efficient uptake system for the osm...
Transcription of the proU operon in Escherichia coli is induced several hundredfold upon growth of c...
Transcription of the proU operon in Escherichia coli is induced several hundredfold upon growth of c...
Summary. Glycine betaine, which functions as an osmopro-tectant, is accumulated to high intracellula...
Environmental osmotic strength is one of the influential factors controlling how well an organism ca...
Glycine betaine, which functions as an osmoprotectant, is accumulated to high intracellular concentr...
The proU operon in enterobacteria encodes a binding-protein-dependent transporter for the active upt...
Transcription of theproU operon ofEscherichia coli is induced several hundred-fold upon growth at el...
Unlike the 70-controlled P2 promoter for the osmotically regulated proU operon of Escherichia coli a...
The growth of Escherichia coli strains in media having elevated osmolarity was promoted in the prese...
The proU locus encodes an osmotically inducible glycine betaine transport system that is important i...
AbstractTransporter ProP of Escherichia coli, a member of the major facilitator superfamily, mediate...
Adaptation to osmotic stress alters the amounts of several specific proteins in the Escherichia coli...
Bacillus subtilis is known to accumulate large amounts of the compatible solute proline via de novo ...