AI Article Synopsis

  • - HIV-1 uses the accessory protein Vpu to evade the immune response by manipulating DNA repair processes to degrade its own viral cDNA in infected cells.
  • - Vpu interacts with various proteins at the nuclear pore to alter the behavior of promyelocytic leukaemia protein and reduce modifications to Bloom syndrome protein, which helps eliminate viral cDNA.
  • - Targeting DNA repair mechanisms influenced by Vpu could enhance antiviral immune responses and reduce the persistence of latent HIV in the body.

Article Abstract

To avoid innate sensing and immune control, human immunodeficiency virus type 1 (HIV-1) has to prevent the accumulation of viral complementary DNA species. Here, we show that the late HIV-1 accessory protein Vpu hijacks DNA repair mechanisms to promote degradation of nuclear viral cDNA in cells that are already productively infected. Vpu achieves this by interacting with RanBP2-RanGAP1*SUMO1-Ubc9 SUMO E3-ligase complexes at the nuclear pore to reprogramme promyelocytic leukaemia protein nuclear bodies and reduce SUMOylation of Bloom syndrome protein, unleashing end degradation of viral cDNA. Concomitantly, Vpu inhibits RAD52-mediated homologous repair of viral cDNA, preventing the generation of dead-end circular forms of single copies of the long terminal repeat and permitting sustained nucleolytic attack. Our results identify Vpu as a key modulator of the DNA repair machinery. We show that Bloom syndrome protein eliminates nuclear HIV-1 cDNA and thereby suppresses immune sensing and proviral hyper-integration. Therapeutic targeting of DNA repair may facilitate the induction of antiviral immunity and suppress proviral integration replenishing latent HIV reservoirs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7616938PMC
http://dx.doi.org/10.1038/s41564-020-0753-6DOI Listing

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