Interactions between the HIV-1 Unspliced mRNA and Host mRNA Decay Machineries

Daniela Toro-Ascuy1, Bárbara Rojas-Araya2, Fernando Valiente-Echeverría3

  • 1Molecular and Cellular Virology Laboratory, Virology Program, Institute of Biomedical Sciences, Faculty of Medicine, Universidad of Chile, Independencia 834100, Santiago, Chile. daniela.toroascuy@gmail.com.

Viruses
|November 26, 2016
PubMed

Insights

HIV-1 unspliced mRNA stability is crucial for viral replication. Host mRNA decay factors, including UPF1 and YTHDF2, surprisingly promote HIV-1 gene expression and particle assembly.

Area of Science:

  • Molecular Biology
  • Virology
  • RNA Biology

Background:

  • The human immunodeficiency virus type-1 (HIV-1) unspliced transcript serves dual roles as mRNA and genomic RNA.
  • This viral RNA is typically degraded in the nucleus unless the viral protein REV is present, necessitating tight regulation of its stability.
  • HIV-1 unspliced mRNA interacts with host messenger ribonucleoproteins (mRNPs), incorporating proteins involved in mRNA decay pathways.

Purpose of the Study:

  • To review the current understanding of how HIV-1 unspliced mRNA interacts with host mRNA decay machineries.
  • To explore the paradoxical roles of host mRNA decay factors in promoting viral replication.

Main Methods:

  • Literature review of studies investigating HIV-1 mRNA-host protein interactions.
  • Analysis of host factors like UPF1, STAU1/2, miRISC, PBs, and m6A-binding proteins (e.g., YTHDF2).

Main Results:

  • Host proteins typically involved in mRNA decay, such as UPF1 and YTHDF2, are recruited to the HIV-1 unspliced mRNA.
  • These host factors, including those recognizing N6-methyladenosine (m6A) modifications, play positive roles in viral gene expression.
  • Components of cytoplasmic mRNA decay pathways are essential for efficient viral particle assembly.

Conclusions:

  • HIV-1 actively engages host mRNA decay components to facilitate its replication cycle.
  • The virus exploits these cellular machineries, including m6A-mediated pathways, to enhance viral gene expression and virion production.

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