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1.
The arginine repressor is essential for plasmid-stabilizing site-specific recombination at the ColE1 cer locus // EMBO Journal, 1988. Vol. 7, N 13.-С.4389-4395

2.
Functional analysis of ARGRI and ARGRIII regulatory proteins involved in the regulation of arginine metabolism in Saccharomyces cerevisiae // Mol. and Gen. Genet., 1990. Vol. 222, N 2-3.-С.192-200

3.
Молекулярное клонирование и структурнофункциональный анализ генов биосинтеза аргинина термофильной бактерии Bacillus stearothermophilus // Генетика, 1990. Т. 26, N 1.-С.1915-1925

4.
Explanation for different types of regulation of arginine biosynthesis in Escherichia coli B and Escherichia coli K12 caused by a difference between their arginine repressors // J. Mol. Biol., 1994. Vol. 235, N 1.-С.221-230

5.
Explanation for different types of regulation of arginine biosynthesis in Escherichia coli B and Escherichia coli K12 caused by a difference between their arginine repressors // J. Mol. Biol., 1994. Vol. 235, N 1.-С.221-230

6.
The highly thermostable arginine repressor of Bacillus stearothermophilus: Gene cloning and repressor-operator interaction // Mol. Microbiol., 1997. Vol. 25, N 2.-С.385-398

7.
A superrepressor mutant of the arginine repressor with a correctly predicted alteration of ligand binding specificity // J. Mol. Biol., 1998. Vol. 279, N 4.-С.753-760

8.
The ArgR regulatory protein, a helper to the anaerobic regulator ANR during transcriptional activation of the arcD promoter in Pseudomonas aeruginosa // J. Bacteriol., 1999. Vol. 181, N 8.-С.2459-2464

9.
Mutational analysis of the termostable arginine repressor from Bacillus stearothermophilus: Dissecting residues involved in DNA binding properties // J. Mol. Biol., 1999. Vol. 291, N 4.-С.843-855

10.
Amino acid-mediated induction of the basic amino acid-specific outer membrane porin OprD from Pseudomonas aeruginosa // J. Bacteriol., 1999. Vol. 181, N 17.-С.5426-5432

11.
Barcelona-Andres Gene structure, organization, expression, and potential regulatory mechanisms of arginine catabolism in Enterococcus faecalis // J. Bacteriol., 2002. Vol. 184, N 22.-С.6289-6300

12.
Recherche d'orthologues d'ArgR/AhrC dans le genome de bacteries a Gram positif. Mise en evidence de groupes de syntenie // Sci. alim., 2002. Vol. 22, N 1-2.-С.133-142

13.
Arginine operator binding by heterologous and chimeric ArgR repressors from Escherichia coli and Bacillus stearothermophilus // J. Bacteriol., 2002. Vol. 184, N 23.-С.6602-6614

14.
Barcelona-Andres Gene structure, organization, expression, and potential regulatory mechanisms of arginine catabolism in Enterococcus faecalis // J. Bacteriol., 2002. Vol. 184, N 22.-С.6289-6300

15.
Nandineni Madhusudan R. Evidence for an arginine exporter encoded by yggA (argO) that is regulated by the LysR-type transcriptional regulator ArgP in Escherichia coli // J. Bacteriol., 2004. Vol. 186, N 11.-С.3539-3546

16.
ArgR and AhrC are both required for regulation of arginine metabolism in Lactococcus lactis // J. Bacteriol., 2004. Vol. 186, N 4.-С.1147-1157

17.
The global arginine regulator ArgR controls expression of argF in Pseudomonas syringae pv. phaseolicola but is not required for the synthesis of phaseolotoxin or for the regulated expression of argK // J. Bacteriol., 2004. Vol. 186, N 11.-С.3653-3655

18.
Two arginine repressors regulate arginine biosynthesis in Lactobacillus plantarum // J. Bacteriol., 2004. Vol. 186, N 18.-С.6059-6069

19.
Lu Transcriptome analysis of the ArgR regulon in Pseudomonas aeruginosa // J. Bacteriol., 2004. Vol. 186, N 12.-С.3855-3851

20.
Transcriptome analysis of the Lactococcus lactis ArgR and AhrC regulons // Appl. and Environ. Microbiol., 2008. Vol. 74, N 15.-С.4768-4771

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