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1.
Aiba Transfer of phosphoryl group between two regulatory proteins involved in osmoregulatory expression of the ompF and ompC genes in Escherichia coli // J. Biol. Chem., 1989. Vol. 264, N 15.-С.8563-8567

2.
Analysis and DNA sequence of the osmoregulated treA gene encoding the periplasmic trehalase of Escherichia coli K12 // Mol. and Gen. Genet., 1989. Vol. 217, N 2-3.-С.347-354

3.
Batchelor Imaping OmpR localization in Escherichia coli // Mol. Microbiol., 2006. Vol. 59, N 6.-С.1767-1778

4.
Bernardini Maria L. The two-component regulatory system OmpR-EnvZ controls the virulence of Shigella flexneri // J. Bacteriol, 1990. Vol. 172, N 11.-С.6274-6281

5.
Botsford James L. Analysis of protein expression in response to osmotic stress in Escherichia coli // FEMS Microbiol. Lett., 1990. Vol. 72, N 3.-С.355-360

6.
Cottam A.N. Genetic studies of mutants in a high-affinity methionine transport system in Salmonella typhimurium // Mol. and Gen. Genet., 1989. Vol. 215, N 2.-С.358-363

7.
Csonka Laszlo N. Physiological and genetic responses of bacteria to osmotic stress // Microbiol. Rev., 1989. Vol. 53, N 1.-С.121-147

8.
Dandekar Abhaya M. A single base pair change in proline biosynthesis genes causes osmotic stress tolerance // J. Bacteriol., 1988. Vol. 170, N 12.-С.5943-5945

9.
Dattananda C.S. Osmoregulation in Escherichia coli: complementation analysis and gene-protein relationships in the proU locus // J. Bacteriol., 1989. Vol. 71, N 4.-С.1915-1922

10.
Gowrishankar J. Nucleotide sequence of the osmoregulatory proU operon of Escherichia coli // J. Bacteriol., 1989. Vol. 71, N 4.-С.1923-1931

11.
Gutierrez J.A. Salmonella typhimurium mutants that are not stimulated by glycinebetaine in media of elevated osmolarity // Environ. Stress Plants. -Berlin etc., 1989.-С.89-98

12.
Jung L-Carnitine metabolization and osmotic stress response in Escherichia coli // J. Basic Microbiol., 1990. Vol. 30, N 6.-С.409-413

13.
Klein W. The repression of trehalose transport and metabolism in Escherichia coli by high osmolarity is mediated by trehalose-6-phosphate phosphatase // Res. Microbiol., 1991. Vol. 142, N 4.-С.359-371

14.
Location of phosphorylation site nd DNA-binding site of a positive regulator, OmpR, involved in activation of the osmoregulatory genes of Eschirichia coli // FEBS Lett, 1989. Vol. 249, N 2.-С.168-172

15.
micF RNA in ompB mutants of Escherichia coli: Different pathways regulate micF RNA levels in response to osmolarity and temperature change // J. Bacteriol., 1990. Vol. 172, N 8.-С.4143-4150

16.
Nucleotide sequence of the transcriptional control region of the osmotically regulated proU operon of Salmonella typhimurium and identification of the 5' endpoint of the proU mRNA // J. Bacteriol., 1989. Vol. 171, N 9.-С.4694-4706

17.
Osmoregulatory systems of Escherichia coli: Identification of betaine-carnitine-choline transporter family member BetU and distributions of betU and trkG among pathogenic and nonpathogenic isolates // J. Bacteriol., 2004. Vol. 186, N 2.-С.296-306

18.
Osmoregulatory systems of Escherichia coli: Identification of betaine-carnitine-choline transporter family member BetU and distributions of betU and trkG among pathogenic and nonpathogenic isolates // J. Bacteriol., 2004. Vol. 186, N 2.-С.296-306

19.
Over-expression of StAPX in tobacco improves seed germination and increases early seedling tolerance to salinity and osmotic stresses // Plant Cell Repts, 2010. Vol. 29, N 8.-С.917-926

20.
Ramirez Robert M. Osmotic signal transduction to proU is independent of DNA supercoiling in Escherichia coli // J. Bacteriol., 1991. Vol. 173, N 2.-С.879-885

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