Abstract
Human immunodeficiency virus (HIV-1) is the primary retroviral agent responsible for AIDS and related disorders worldwide. One of its identified gene products, tat protein, stimulates in trans the expression of all HIV-1 genes by several orders of magnitude1–7. Cells infected with HIV-1 require tat protein to produce virus, suggesting that trans-activation is crucial for viral replication8,9. The essential cis-acting site for trans-activation, termed tar, resides within the R region of the HIV-1 long terminal repeat (LTR), between −17 and +54 with respect to the initiation site of viral transcription10,11. It is striking that the RNA encoded between +1 and +59 has the potential to form an extensive stem-loop secondary structure which, as a portion of the untranslated leader RNA, would be common to all HIV-1 mRNAs 11,12. We now present the results of nucleotide substitution experiments which suggest that tat trans-activation requires presentation of the sequence +30CUGGG+34 in tar within the loop of a RNA hairpin structure.
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References
Sodroski, J. et al. Science 227, 171–173 (1985).
Arya, S. K., Guo, C., Josephs, S. F. & Wong-Staal, F. Science 229, 69–74 (1985).
Sodroski, J., Patarca, R., Rosen, C., Wong-Staal, F. & Haseltine, W. Science 229, 74–77 (1985).
Rosen, C. A. et al. Nature 319, 555–559 (1986).
Feinberg, M. B., Jarrett, R. F., Aldovini, A., Gallo, R. C. & Wong-Staal, F. Cell 46, 807–817 (1986).
Cullen, B. R. Cell 46, 973–982 (1986).
Peterlin, B. M., Luciw, P. A., Barr, P. J. & Walker, M. D. Proc. natn. Acad. Sci. U.S.A. 83, 9734–9738 (1986).
Fisher, A. G. et al. Nature 320, 367–371 (1986).
Dayton, A. I., Sodroski, J. G., Rosen, C. A., Goh, W. C. & Haseltine, W. Cell 44, 941–947 (1986).
Rosen, C. A., Sodroski, J. G. & Haseltine, W. A. Cell 41, 813–823 (1985).
Muesing, M. A., Smith, D. H. & Capon, D. J. Cell 48, 691–701 (1987).
Okamoto, T. & Wong-Staal, F. Cell 47, 29–35 (1986).
Guyader, M., Emerman, M., Sonigo, P., Clavel, F., Montagnier, L. & Alizon, M. Nature 326, 662–669 (1987).
Arya, S. K. et al. Nature 328, 548–550 (1987).
Emerman, M., Guyader, M., Montagnier, L., Baltimore, D. & Muesing, M. A. EMBO J. 6, 3755–3760 (1987).
Cullen, B. R. Cell 46, 973–982 (1985).
Hauber, J., Perkins, A., Heimer, E. P. & Cullen, B. R. Proc. natn. Acad. Sci. U.S.A 84, 6364–6368 (1987).
Kao, S. Y., Caiman, A. F., Luciw, P. A. & Peterlin, B. M. Nature 330, 489–493 (1987).
Rice, A. P. & Matthews, M. B. Nature 332, 551–553 (1988).
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Feng, S., Holland, E. HIV-1 tat trans-activation requires the loop sequence within tar. Nature 334, 165–167 (1988). https://doi.org/10.1038/334165a0
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DOI: https://doi.org/10.1038/334165a0