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Nucleic Acids Research|August 15, 1997
Increased polymerase fidelity of the 3TC-resistant variants of HIV-1 reverse transcriptaseB B Oude Essink, N K Back, B BerkhoutVirology|October 29, 1998
The native structure of the human immunodeficiency virus type 1 RNA genome is required for the first strand transfer of reverse transcriptionB Berkhout, A T Das, J L van WamelThe Journal of Biological Chemistry|June 9, 2001
The dimer initiation site hairpin mediates dimerization of the human immunodeficiency virus, type 2 RNA genomeA M Dirac, H Huthoff, J Kjems, et al.Journal of Molecular Biology|November 29, 1996
HIV-1 reverse transcriptase discriminates against non-self tRNA primersB B Oude Essink, A T Das, B BerkhoutThe Journal of Biological Chemistry|October 6, 1995
Structural requirements for the binding of tRNA Lys3 to reverse transcriptase of the human immunodeficiency virus type 1B B Oude Essink, A T Das, B BerkhoutNucleic Acids Research|December 24, 1998
The ability of the HIV-1 AAUAAA signal to bind polyadenylation factors is controlled by local RNA structureB I Klasens, M Thiesen, A Virtanen, et al.Science (New York, N.Y.)|March 29, 1991
Characterization of a human TAR RNA-binding protein that activates the HIV-1 LTRA Gatignol, A Buckler-White, B Berkhout, et al.Cell|August 24, 1990
TAR-independent activation of the HIV-1 LTR: evidence that tat requires specific regions of the promoterB Berkhout, A Gatignol, A B Rabson, et al.RNA (New York, N.Y.)|August 11, 2001
Structural features in the HIV-1 repeat region facilitate strand transfer during reverse transcriptionB Berkhout, N L Vastenhouw, B I Klasens, et al.Virology|May 28, 1998
Improved envelope function selected by long-term cultivation of a translation-impaired HIV-1 mutantA T Das, A P van Dam, B Klaver, et al.Pageof 13