Transient Tat activation of the HIVLAV/Lai-1 LTR by primary HIV-1 phenotypic variants in HeLaT4LTRbeta-gal cells.

APMIS

Department of Molecular Biology, The Gade Institute, Bergen High Technology Centre, University of Bergen, Norway.

Published: May 1999

AI Article Synopsis

  • The study distinguishes between rapid/high and slow/low phenotypic variants of primary HIV-1 based on their co-receptor use and ability to infect cell lines.
  • The researchers found that Tat proteins from primary isolates efficiently activate transcription in lab strains of HIV but showed that infection in cells is short-lived, indicating a potential post-penetration control mechanism.
  • They conclude that while certain lab-based vectors can help study primary HIV isolates, their effectiveness hinges on the stability of Tat protein activation.

Article Abstract

The rapid/high and slow/low phenotypic variants of primary HIV-1 isolates can be distinguished by their differential co-receptor utilization and their ability to productively infect established cell lines. To reveal possible differences in Tat-mediated transactivation, the potential for primary isolate Tat proteins to transactivate the LTR from the laboratory strain HIVLAV/Lai-1 was examined. Using either cell-mediated or PEG-induced fusion of cells infected with primary HIV-1 isolates and HeLaT4LTRbeta-gal cells, it was clear that the Tat protein encoded by all patient isolates efficiently activated transcription from the HIVLAV/Lai-1 LTR. However, infection of HeLaT4LTRbeta-gal cells by primary HIV-1 isolates was transient, suggesting the development of a postpenetration host control of HIV-1 replication at the level of tat activation, a feature not observed for the laboratory-adapted strain HIVIIIB. Although plasmid vectors based on the HIVLAV/Lai-1 LTR remain useful for the development of susceptible established cell lines for titrating primary HIV-1 isolates, the efficacy of such a system would depend upon the stability/duration of Tat activation.

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Source
http://dx.doi.org/10.1111/j.1699-0463.1999.tb01584.xDOI Listing

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