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1.
Utilization of enterobactin and other exogenous iron sources by Haemophilus influenzae, H. parainfluenzae and H. paraphrophilus // J. Gen. Microbiol., 1990. Vol. 136, N 12.-С.2343-2350

2.
The Escherichia coli enterobactin biosynthesis gene, entD: nucleotide sequence and membrane localization of its protein product // Mol. Microbiol., 1989. Vol. 3, N 6.-С.757-766

3.
Coderre Peter E. The entD gene of the Escherichia coli K12 enterobactin gene cluster // I. Gen. Microbiol., 1989. Vol. 135, N 11.-С.3043-3055

4.
Anderson Mark T. The BfeR regulator mediates enterobactin-inducible expression of Bordetella enterobactin utilization genes // J. Bacteriol., 2004. Vol. 186, N 21.-С.7302-7311

5.
Perrotte-Piquemal Pyrophosphate increases the efficiency of enterobactin-dependent iron uptake in Escherichia coli // Biochimie, 1999. Vol. 81, N 3.-С.245-253

6.
Production of the siderophore enterobactin: Use of four different fermentation systems and identification of the compound by HPLC // Biotechnol. and Bioeng., 1993. Vol. 41, N 2.-С.237-244

7.
Production of the siderophore enterobactin: Use of four different fermentation systems and identification of the compound by HPLC // Biotechnol. and Bioeng., 1993. Vol. 41, N 2.-С.237-244

8.
Foster Mark S. Phenylalanineand tyrosine-dependent production of enterobactin in Escherichia coli // FEMS Microbiol. Lett., 1994. Vol. 117, N 1.-С.79-83

9.
Staab J.F. Nucleotide sequence of the Escherichia coli entE gene // FEMS Microbiol. Lett., 1989. Vol. 59, N 1-2.-С.15-19

10.
Ozenberger Bradley A. Nucleotide sequence of Escherichia coli isochorismate Synthetase gene entC and evolutionary relationship of isochorismate synthetase and other chorismate-utilizing enzymes // J. Bacteriol., 1989. Vol. 171, N 2.-С.775-783

11.
Liu Nucleotide sequence of a cluster of Escherichia coli enterobactin biosynthesis genes: identification of entA and purification of its product 2,3-dihydro-2,3-dihydroxybenzoate dehydrogenase // J. Bacteriol., 1989. Vol. 171, N 2.-С.791-798

12.
Nucleotide sequence and transcriptional organization of the Escherichia coli enterobactin biosynthesis cistrons entB and entA // J. Bacteriol., 1989. Vol. 171, N 2.-С.784-790

13.
Raymond Renneth N. New coordination chemistry of the siderophores // J. Cell. Biochem., 1990, Suppl. 14С.-С.195

14.
Molecular studies on enzymes in chorismate metabolism and the enterobactin biosynthetic pathway // Chem. Rev., 1990. Vol. 90, N 7.-С.1105-1129

15.
Armstrong Sandra K. Molecular analysis of the Escherichia coli ferric enterobactin receptor FepA // J. Biol. Chem., 1990. Vol. 265, N 24.-С.14536-14543

16.
Iron uptake in Pseudomonas aeruginosa mediated by N-(2,3-dihydroxybenzoyl)-L-serine and 2,3-dihydroxybenzoic acid // FEMS Microbiol. Lett., 1995. Vol. 127, N 1-2.-С.145-149

17.
Iron uptake in Pseudomonas aeruginosa mediated by N-(2,3-dihydroxybenzoyl)-L-serine and 2,3-dihydroxybenzoic acid // FEMS Microbiol. Lett., 1995. Vol. 127, N 1-2.-С.145-149

18.
Involvement of enterobactin in norepinephrine-mediated iron supply from transferrin to enterohaemorrhagic Escherichia coli // FEMS Microbiol. Lett., 2003. Vol. 222, N 1.-С.39-43

19.
Incidence of aerobactin and enterobactin production and drug resistance in Gram-negative clinical isolates // Biomed. Lett., 1992. Vol. 47, N 185.-С.7-13

20.
Identification of enterobactin and linear dihydroxybenzoylserine compounds by HPLC and ion spray mass spectrometry (LC/MS and MS/MS) // Biol. Metals., 1991. Vol. 4, N 2.-С.113-118

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