4.8 Article

Deciphering RNA G-quadruplex function during the early steps of HIV-1 infection

期刊

NUCLEIC ACIDS RESEARCH
卷 50, 期 21, 页码 12328-12343

出版社

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkac1030

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资金

  1. Agence Nationale de Recherches sur le Sida et les Hepatites Virales (ANRS) [ECTZ35927, ECTZ103899, ANRS AAP1-2015]
  2. INSERM
  3. PRAIRIE [ANR-19-P3IA-0001]
  4. ANRS [ECTZ35927, ANRS-AAP1-2015]
  5. Belgian Fonds national de la Recherche Scientifique (FNRS)
  6. region Nouvelle Aquitaine

向作者/读者索取更多资源

The formation of G-quadruplex structures during HIV-1 infection plays a crucial role in viral replication and processing of viral RNA genome. The use of G4-binders has shown to efficiently inhibit HIV-1 infectivity.
G-quadruplexes (G4s) are four-stranded nucleic acid structures formed by the stacking of G-tetrads. Here we investigated their formation and function during HIV-1 infection. Using bioinformatics and biophysics analyses we first searched for evolutionary conserved G4-forming sequences in HIV-1 genome. We identified 10 G4s with conservation rates higher than those of HIV-1 regulatory sequences such as RRE and TAR. We then used porphyrin-based G4-binders to probe the formation of the G4s during infection of human cells by native HIV-1. The G4-binders efficiently inhibited HIV-1 infectivity, which is attributed to the formation of G4 structures during HIV-1 replication. Using a qRT-PCR approach, we showed that the formation of viral G4s occurs during the first 2 h post-infection and their stabilization by the G4-binders prevents initiation of reverse transcription. We also used a G4-RNA pull-down approach, based on a G4-specific biotinylated probe, to allow the direct detection and identification of viral G4-RNA in infected cells. Most of the detected G4-RNAs contain crucial regulatory elements such as the PPT and cPPT sequences as well as the U3 region. Hence, these G4s would function in the early stages of infection when the viral RNA genome is being processed for the reverse transcription step.

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