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1.
Andersson Examination of HIV-1 proviral sequence diversity using denaturing gradiet gel electrophoresis (DGGE) reveals dominant forms within patient samples // J. Cell. Biochem., 1993, Suppl. 17e.-С.73

2.
Franchini Characterization of replication competent human immunodeficiency type 2 proviral clone HIV-2[SBL/ISY]

3.
A highly divergent proviral DNA clone of SIV from a distinct species of african geen monkey // Virology, 1991. Vol. 182, N 1.-С.397-402

4.
Genetic determinants of feline leukemia virus-induced lymphoid tumors: Patterns of proviral insertion and gene rearrangement // J. Virol., 1994. Vol. 68, N 12.-С.8296-8303

5.
Genetic determinants of feline leukemia virus-induced lymphoid tumors: Patterns of proviral insertion and gene rearrangement // J. Virol., 1994. Vol. 68, N 12.-С.8296-8303

6.
A deletion and a rearrangement distinguish between the intracisternal A-particle of Hox-2.4 and that of interleukin-3 in the same leukemic cells // Virology, 1991. Vol. 182, N 1.-С.382-387

7.
A deletion and a rearrangement distinguish between the intracisternal A-particle of Hox-2.4 and that of interleukin-3 in the same leukemic cells // Virology, 1991. Vol. 182, N 1.-С.382-387

8.
MacArthur Craig A. Fgf-8, activated by proviral insertion, cooperates with the Wnt-1 transgene in murine mammary tumorigenesis // J. Virol., 1995. Vol. 69, N 4.-С.2501-2507

9.
MacArthur Craig A. Fgf-8, activated by proviral insertion, cooperates with the Wnt-1 transgene in murine mammary tumorigenesis // J. Virol., 1995. Vol. 69, N 4.-С.2501-2507

10.
Maschera Analysis of resistance to human immunodeficiency virus type 1 protease inhibitors by using matched bacterial expression and proviral infection vectors // J. Virol., 1995. Vol. 69, N 9.-С.5431-5436

11.
Highly efficient germ-line transmission of proviral insertions in zebrafish // Proc. Nat. Acad. Sci. USA, 1996. Vol. 93, N 15.-С.7777-7782

12.
Batchu R.B. Human immunodeficiency virus-1 proviral gene disruption by targeted gene therapy: A hypothetical technique for the elimination of provirus from the infected cells // Med. Hypotheses, 1997. Vol. 49, N 1.-С.35-39

13.
A full-length and replication-competent proviral clone of SIV[AGM] from tantalus monkeys // Virology, 1997. Vol. 228, N 2.-С.394-399

14.
A full-length and replication-competent proviral clone of SIV[AGM] from tantalus monkeys // Virology, 1997. Vol. 228, N 2.-С.394-399

15.
Second-site proviral enhancer alterations in lymphomas induced by enhancer mutants of SL3-3 murine leukemia virus: Negative effect of nuclear factor binding site // J. Virol., 1997. Vol. 71, N 2.-С.1196-1206

16.
Second-site proviral enhancer alterations in lymphomas induced by enhancer mutants of SL3-3 murine leukemia virus: Negative effect of nuclear factor binding site // J. Virol., 1997. Vol. 71, N 2.-С.1196-1206

17.
Mergia Characterization of provirus clones of simian foamy virus type 1 // J. Virol., 1998. Vol. 72, N 1.-С.817-822

18.
Threshold number of provirus copies required per cell for efficient virus production and interference in moloney murine leukemia virus-infected NIH 3T3 cells // J. Virol., 1998. Vol. 72, N 7.-С.5414-5424

19.
Threshold number of provirus copies required per cell for efficient virus production and interference in moloney murine leukemia virus-infected NIH 3T3 cells // J. Virol., 1998. Vol. 72, N 7.-С.5414-5424

20.
Evidence that badnavirus infection in Musa can originate from integrated pararetroviral sequences // Virology, 1999. Vol. 255, N 2.-С.214-220

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