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Elements in the 5' Untranslated Region of Viral RNA Important for HIV Gag Recognition and Cross-Packaging

  1. Author:
    Cheng,Zetao
    Nikolaitchik,Olga [ORCID]
    Duchon,Alice
    Rawson, Jonathan M O
    Pathak,Vinay
    Hu,Wei-Shau
  2. Author Address

    Viral Recombination Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702, USA., Viral Mutation Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702, USA.,
    1. Year: 2025
    2. Date: Apr 10
    3. Epub Date: 2025 04 10
  1. Journal: Viruses
    1. 17
    2. 4
    3. Pages: 551
  2. Type of Article: Article
  3. Article Number: 551
  1. Abstract:

    During retrovirus assembly, Gag packages unspliced viral RNA as the virion genome. Genome packaging is usually specific with occasional exceptions of cross-packaging RNA from distantly related retroviruses. For example, HIV-1 Gag can efficiently package HIV-2 RNA. To better understand how HIV-1 Gag selects packaging substrates, we defined elements in the HIV-2 5 39; untranslated region (UTR) that are important for this process. Although sharing little homology, both HIV-1 and HIV-2 5 39; UTRs have unpaired guanosines essential for packaging by their own Gag. Simultaneously substituting guanosines of nine sites in the HIV-2 5 39; UTR caused severe defects in HIV-1 Gag-mediated packaging. Two of the nine sites are particularly important, mutating each one impaired HIV-1 Gag-mediated packaging, whereas the other sites required mutations in multiple sites to produce similar effects. Additionally, we identified one site that impacts HIV-1 Gag but is dispensable for HIV-2 Gag selective packaging. Furthermore, combining mutations has an additive effect on packaging defects for HIV-1 Gag, in contrast to the previously reported synergistic effects for HIV-2 Gag. Our study demonstrates that Gag proteins from two different retroviruses recognize and use mostly the same set of cis-acting elements to mediate RNA packaging and provide the mechanistic basis for genome cross-packaging.

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External Sources

  1. DOI: 10.3390/v17040551
  2. PMID: 40284994
  3. PMCID: PMC12031250
  4. PII : v17040551

Library Notes

  1. Fiscal Year: FY2024-2025
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