Glycine betaine, which functions as an osmoprotectant, is accumulated to high intracellular concentrations in Escherichia coli at high osmolarity. We demonstrate the presence of a high-affinity, binding protein dependent transport system for glycine betaine, which is encoded by the proU region. We show the osmotically regulated synthesis of a 32 kDa periplasmic protein that is a glycine betaine binding protein with a KD of 1.4 microM. ProU-mediated glycine betaine transport is osmotically stimulated at the level of gene expression. The osmolarity of the medium also regulates the activity of the transport system, while binding of glycine betaine to its binding protein is independent of the osmolarity. We also find a second glycine betaine tr...
Expression of the Escherichia coli proU operon, which encodes an efficient uptake system for the osm...
Microorganisms react upon hyperosmotic stress by accumulating compatible solutes. Here we report tha...
The transport of glycine betaine by Stuphyfococcus uureus was investigated. Two transport systems we...
Glycine betaine, which functions as an osmoprotectant, is accumulated to high intracellular concentr...
Summary. Glycine betaine, which functions as an osmopro-tectant, is accumulated to high intracellula...
The Escherichia coli proU operon encodes a high-affinity, binding-protein-dependent transport system...
Adaptation to osmotic stress alters the amounts of several specific proteins in the Escherichia coli...
The ATP-binding cassette (ABC) transporter ProU from Escherichia coli translocates a wide range of c...
The proU locus in Escherichia coli encodes an osmotically inducible transport system for two substra...
The ATP-binding cassette (ABC) transporter ProU from Escherichia coli translocates a wide range of c...
proP of Escherichia coli encodes an active transport system for proline and glycine betaine which is...
Transporter-mediated osmolyte accumulation stimulates the growth of Escherichia coli in high-osmolal...
In a wide variety of organisms, L-proIine and glycine betaine are amongst the compounds accumulated ...
The proU operon in enterobacteria encodes a binding-protein-dependent transporter for the active upt...
AbstractTransporter ProP of Escherichia coli, a member of the major facilitator superfamily, mediate...
Expression of the Escherichia coli proU operon, which encodes an efficient uptake system for the osm...
Microorganisms react upon hyperosmotic stress by accumulating compatible solutes. Here we report tha...
The transport of glycine betaine by Stuphyfococcus uureus was investigated. Two transport systems we...
Glycine betaine, which functions as an osmoprotectant, is accumulated to high intracellular concentr...
Summary. Glycine betaine, which functions as an osmopro-tectant, is accumulated to high intracellula...
The Escherichia coli proU operon encodes a high-affinity, binding-protein-dependent transport system...
Adaptation to osmotic stress alters the amounts of several specific proteins in the Escherichia coli...
The ATP-binding cassette (ABC) transporter ProU from Escherichia coli translocates a wide range of c...
The proU locus in Escherichia coli encodes an osmotically inducible transport system for two substra...
The ATP-binding cassette (ABC) transporter ProU from Escherichia coli translocates a wide range of c...
proP of Escherichia coli encodes an active transport system for proline and glycine betaine which is...
Transporter-mediated osmolyte accumulation stimulates the growth of Escherichia coli in high-osmolal...
In a wide variety of organisms, L-proIine and glycine betaine are amongst the compounds accumulated ...
The proU operon in enterobacteria encodes a binding-protein-dependent transporter for the active upt...
AbstractTransporter ProP of Escherichia coli, a member of the major facilitator superfamily, mediate...
Expression of the Escherichia coli proU operon, which encodes an efficient uptake system for the osm...
Microorganisms react upon hyperosmotic stress by accumulating compatible solutes. Here we report tha...
The transport of glycine betaine by Stuphyfococcus uureus was investigated. Two transport systems we...