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1.
A retroposon-like short repetitive DNA element in the genome of the human blood fluke, Schistosoma mansoni // Chromosoma, 1989. Vol. 97, N 6.-С.421-428

2.
A small element from the Mason-Pfizer monkey virus genome HIV-1 expression and replication REV-independent // J. Cell. Biochem., 1994, Suppl. 18c.-С.114

3.
A small element from the Mason-Pfizer monkey virus genome makes human immunodeficiency virus type 1 expression and replication Rev-independent // Proc. Nat. Acad. Sci. USA, 1994. Vol. 91, N 4.-С.1256-1260

4.
Helga-Maria C. An intact TAR element and cytoplasmic localization are necessary for efficient packaging of human immunodeficiency virus type 1 genomic RNA // J. Virol., 1999. Vol. 73, N 5.-С.4127-4135

5.
Helga-Maria C. An intact TAR element and cytoplasmic localization are necessary for efficient packaging of human immunodeficiency virus type 1 genomic RNA // J. Virol., 1999. Vol. 73, N 5.-С.4127-4135

6.
An intron with a constitutive transport element is retained in a Tap meыsenger RNA // Nature. -Gr. Brit., 2006. Vol. 443, N 7108.-С.234-237

7.
Characterization of a 54-nucleotide gap region in the 28S rRNA gene of Schistosoma mansoni // Mol. and Biochem. Parasitol., 1991. Vol. 45, N 2.-С.205-214

8.
Srinivasakumar Characterization of deletion mutations in the capsid region of human immunodeficiency virus type 1 that affect particle formation and gag-pol precursor incorporation // J. Virol., 1995. Vol. 69, N 10.-С.6106-6114

9.
Srinivasakumar Characterization of deletion mutations in the capsid region of human immunodeficiency virus type 1 that affect particle formation and gag-pol precursor incorporation // J. Virol., 1995. Vol. 69, N 10.-С.6106-6114

10.
Coexpression of human immunodeficiency virus envelope proteins and tat from a single simian virus 40 late replacement vector // Proc. Nat. Acad. Sci. USA, 1988. Vol. 85, N 2.-С.334-338

11.
Design and use of an inducibly activated human immunodeficiency virus type 1 Nef to study immune modulation // J. Virol., 2001. Vol. 75, N 2.-С.834-843

12.
Design and use of an inducibly activated human immunodeficiency virus type 1 Nef to study immune modulation // J. Virol., 2001. Vol. 75, N 2.-С.834-843

13.
LoVerde Philip T. Developmentally regulated gene expression in Schistosoma // Exp. Parasitol., 1989. Vol. 68, N 1.-С.116-120

14.
Heterocyclic compounds that inhibit Rev-RRE function and human immunodeficiency virus type 1 replication // Antimicrob. Agents and Chemother., 2008. Vol. 52, N 9.-С.3169-3179

15.
Heterocyclic compounds that inhibit Rev-RRE function and human immunodeficiency virus type 1 replication // Antimicrob. Agents and Chemother., 2008. Vol. 52, N 9.-С.3169-3179

16.
Rekosh HIV-1 core protein precursors made froma a SV40 late replacement vector are properly processed and assembled into virus-like particles // J. Cell. Biochem., 1990. Vol. Suppl. 14D.-С.126

17.
Human immunodeficiency virus env expression becomes Rev-independent if the env region is not defined as an intron // J. Virol., 1994. Vol. 68, N 2.-С.951-958

18.
Human immunodeficiency virus type 1 Nef associates with lipid rafts to downmodulate cell surface CD4 and class I major histocompatibility complex expression and to increase viral infectivity // J. Virol., 2004. Vol. 78, N 4.-С.1685-1696

19.
Human immunodeficiency virus type 1 Nef associates with lipid rafts to downmodulate cell surface CD4 and class I major histocompatibility complex expression and to increase viral infectivity // J. Virol., 2004. Vol. 78, N 4.-С.1685-1696

20.
Human immunodeficiency virus type 1 Pr55{g}{a}{g} and Pr160{g}{a}{g} {p}{o}{l} expressed from a simian virus 40 late replacement vector are efficiently processed and assembled into viruslike particles // J. Virol., 1990. Vol. 64, N 6.-С.2743-2750

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