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1.
A chimeric activator of transcription that uses two DNA-binding domains to make simultaneous contact with pairs of recognition sites // Mol. Microbiol., 2001. Vol. 41, N 4.-С.885-896

2.
PruSS Birgit M. A regulator of the flagellar regulon of Escherichia coli, flhD, also affects cell division // J. Bacteriol., 1996. Vol. 178, N 3.-С.668-674

3.
AcrS/EnvR represses expression of the acrAB multidrug efflux genes in Escherichia coli // J. Bacteriol., 2008. Vol. 190, N 18.-С.6276-6279

4.
AcrS/EnvR represses expression of the acrAB multidrug efflux genes in Escherichia coli // J. Bacteriol., 2008. Vol. 190, N 18.-С.6276-6279

5.
Zhu Adenovirus vector expressing functional herpes simplex virus ICPO // J. Virol., 1988. Vol. 62, N 12.-С.4544-4553

6.
An amino-terminal fragment of GAL4 binds DNA as a dimer // J. Mol. Biol., 1989. Vol. 209, N 3.-С.423-432

7.
Antibody response to a viral transcriptional regulator // FEBS Lett., 2003. Vol. 534, N 1-3.-С.202-206

8.
C-myb acts as transcriptional activator of the quail PAX6 (PAX-QNR) promoter through two different mechanisms // Oncogene, 1995. Vol. 10, N 2.-С.329-340

9.
Cascade regulation of nif gene expression in Rhizobium meliloti // Cell, 1988. Vol. 54, N 5.-С.671-683

10.
Characterization of the human papillomavirus E2 protein: Evidence of trans-activation and trans-repression in cervical keratinocytes // EMBO Journal, 1994. Vol. 13, N 22.-С.5451-5459

11.
Cloning of binding sequences for the Escherichia coli transcription activators, FNR and CRP: location of bases involved in discrimenation between FNR and CRP // Nucl. Acids Res., 1989. Vol. 17, N 10.-С.3865-3874

12.
Correct intron splicing generates a new type of a putative zinc-binding domain in a transcriptional activator of Aspergillus nidulans // FEBS Lett, 1991. Vol. 280, N 1.-С.11-16

13.
Jiang Defective transcriptional activation by diverse VP16 mutants associated with a common inability to form open promoter complexes // J. Biol. Chem., 1994. Vol. 269, N 8.-С.5505-5508

14.
Distinct regions of p53 have a differential role in transcriptional activation and repression functions // Oncogene, 1994. Vol. 9, N 3.-С.853-859

15.
DNA binding and DNA bending by the MelR transcription activator protein from Escherichia coli // Nucl. Acids Res., 1997. Vol. 25, N 9.-С.1685-1693

16.
DNA binding and DNA bending by the MelR transcription activator protein from Escherichia coli // Nucl. Acids Res., 1997. Vol. 25, N 9.-С.1685-1693

17.
Elevated 'бета'1,4-galactosyltransferase I in highly metastatic human lung cancer cells. Identification of E1AF as important transcription activator // J. Biol. Chem., 2005. Vol. 280, N 13.-С.12503-12516

18.
Evidence for GroES acting as a transcriptional regulator // Biochem. and Biophys. Res. Commun., 1996. Vol. 229, N 2.-С.412-418

19.
Evidence for GroES acting as a transcriptional regulator // Biochem. and Biophys. Res. Commun., 1996. Vol. 229, N 2.-С.412-418

20.
Campos Extensive alanine scanning reveals protein-protein and protein-DNA interaction surfaces in the global regulator FlhD from Escherichia coli // Mol. Microbiol., 2001. Vol. 39, N 3.-С.581-594

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