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1.
Vink Activities of the feline immunodeficiency virus integrase protein produced in Escherichia coli // J. Virol., 1994. Vol. 68, N 3.-С.1468-1474

2.
Polard P. Bacterial transposases and retroviral integrases // Mol. Microbiol., 1995. Vol. 15, N 1.-С.13-23

3.
Katzman Mapping domains of retroviral integrase responsible for viral DNA specificity and target site selection by analysis of chimeras between human immunodeficiency virus type 1 and visna virus integrases // J. Virol., 1995. Vol. 69, N 9.-С.5687-5696

4.
Rice Retroviral integrases and their cousins // Curr. Opinion Struct. Biol., 1996. Vol. 6, N 1.-С.76-83

5.
Differential inhibition of HIV-1 preintegration complexes and purified integrase protein by small molecules // Proc. Nat. Acad. Sci. USA, 1996. Vol. 93, N 18.-С.9742-9747

6.
Heuer Timothy S. Mapping features of HIV-1 integrase near selected sites on viral and target DNA molecules in an active enzyme - DNA complex by photo-cross-linking // Biochemistry, 1997. Vol. 36, N 35.-С.10655-10665

7.
Disruption of the terminal base pairs of retroviral DNA during integration // Genes and Dev., 1997. Vol. 11, N 3.-С.371-382

8.
Complementation of integrase function in HIV-1 virions // EMBO Journal, 1997. Vol. 16, N 16.-С.5123-5138

9.
Bushman Frederic D. Tethering human immunodeficiency virus type 1 preintegration complexes to target DNA promotes integration at nearby sites // J. Virol., 1997. Vol. 71, N 1.-С.458-464

10.
Lack of infectivity of HIV-1 integrase zinc finger-like domain mutant with morphologically normal maturation // Biochem. and Biophys. Res. Commun., 1997. Vol. 239, N 3.-С.715-722

11.
Structure of the catalytic domain of avian sarcoma virus integrase with a bound HIV-1 integrase-targeted inhibitor // Proc. Nat. Acad. Sci. USA, 1998. Vol. 95, N 9.-С.4831-4836

12.
Identification of a nucleotide binding site in HIV-1 integrase // Proc. Nat. Acad. Sci. USA, 1998. Vol. 95, N 8.-С.4170-4175

13.
Wei Footprints on the viral DNA ends in Moloney murine leukemia virus preintegration complexes reflect a specific association with integrase // Proc. Nat. Acad. Sci. USA, 1998. Vol. 95, N 18.-С.10535-10540

14.
Wei Footprints on the viral DNA ends in Moloney murine leukemia virus preintegration complexes reflect a specific association with integrase // Proc. Nat. Acad. Sci. USA, 1998. Vol. 95, N 18.-С.10535-10540

15.
Dorgai Recognition of core binding sites by bacteriophage integrases // J. Mol. Biol., 1998. Vol. 277, N 5.-С.1059-1070

16.
Invading the yeast nucleus: A nuclear localization signal at the C terminus of ty1 integrase is required for transposition in vivo // Mol. and Cell. Biol., 1998. Vol. 18, N 2.-С.1115-1124

17.
Bujacz Binding of different divalent cations to the active site of avian sarcoma virus integrase and thier effects on enzymatic activity // J. Biol. Chem., 1997. Vol. 272, N 29.-С.18161-18168

18.
Katzman Mapping viral DNA specificity to the central region of integrase by using functional human immunodeficiency virus type 1/visna virus chimeric proteins // J. Virol., 1998. Vol. 72, N 3.-С.1744-1753

19.
Esposito Sequence specificity of viral end DNA binding by HIV-1 integrase reveals critical regions for protein-DNA interaction // EMBO Journal, 1998. Vol. 17, N 19.-С.5832-5843

20.
Katzman Mapping viral DNA specificity to the central region of integrase by using functional human immunodeficiency virus type 1/visna virus chimeric proteins // J. Virol., 1998. Vol. 72, N 3.-С.1744-1753

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