4.6 Article

Dual Mechanisms of Translation Initiation of the Full-Length HIV-1 mRNA Contribute to Gag Synthesis

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PLOS ONE
卷 8, 期 7, 页码 -

出版社

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0068108

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资金

  1. Canadian Institutes of Health Research (CIHR) Doctoral Award
  2. Becas Chile-Conicyt
  3. Canada Research Chair in Human Retrovirology
  4. McGill Fraser
  5. Monat and MacPherson career award
  6. Fondo Nacional de Ciencia y Tecnologia, Gobierno de Chile (FONDECYT) [1090318, 1130270]
  7. Programa ICM through Proyecto Instituto Milenio [P09/016-F]
  8. CIHR [HET-85519, MOP-56974]

向作者/读者索取更多资源

The precursor group-specific antigen (wpr55(Gag)) is central to HIV-1 assembly. Its expression alone is sufficient to assemble into virus-like particles. It also selects the genomic RNA for encapsidation and is involved in several important virus-host interactions for viral assembly and restriction, making its synthesis essential for aspects of viral replication. Here, we show that the initiation of translation of the HIV-1 genomic RNA is mediated through both a cap-dependent and an internal ribosome entry site (IRES)-mediated mechanisms. In support of this notion, pr55(Gag) synthesis was maintained at 70% when cap-dependent translation initiation was blocked by the expression of elF4G- and PABP targeting viral proteases in two in vitro systems and in HIV-1-expressing cells directly infected with poliovirus. While our data reveal that IRES-dependent translation of the viral genomic RNA ensures pr55(Gag) expression, the synthesis of other HIV-1 proteins, including that of pr160(Gag/Pol), Vpr and Tat is suppressed early during progressive poliovirus infection. The data presented herein implies that the unspliced HIV-1 genomic RNA utilizes both cap-dependent and IRES-dependent translation initiation to supply pr55(Gag) for virus assembly and production.

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