Potent restriction of HIV-1 and SIVmac239 replication by African green monkey TRIM5α

Retrovirology
|March 27, 2015
PubMed
Abstract

Insights

African green monkey TRIM5α (AgmTRIM5α) powerfully restricts HIV-1 and SIV replication over extended periods, unlike other TRIM5α variants. This cumulative restriction highlights AgmTRIM5α

Area of Science:

  • Virology
  • Immunology
  • Molecular Biology

Background:

  • TRIM5α protein acts as a key restriction factor, inhibiting HIV-1 replication in rhesus macaque cells by blocking reverse transcription.
  • HIV-1 restriction is observed in human cells expressing rhesus TRIM5α and other Old World monkey TRIM5α variants.
  • Previous studies primarily examined TRIM5α restriction in single-round infection assays, with limited investigation into its effects on extended viral replication.

Purpose of the Study:

  • To investigate the efficacy of African green monkey TRIM5α (AgmTRIM5α) and gorilla TRIM5α (gorTRIM5α) in restricting HIV-1 and SIVmac239 replication.
  • To compare the restriction capabilities of xenogeneic TRIM5α proteins in single-round versus extended replication models.
  • To determine the impact of TRIM5α variants on viral replication dynamics, particularly in cell-to-cell transmission.

Main Methods:

  • Transduction of human Jurkat-CCR5 cells (JR5) with AgmTRIM5α and gorTRIM5α genes.
  • Exposure of transduced cells to HIV-1 and SIVmac239 in both single-round and extended replication assays (cell-free and cell-to-cell challenges).
  • Assessment of viral replication levels and virion production/infectivity to evaluate TRIM5α restriction effects.

Main Results:

  • AgmTRIM5α demonstrated modest 4- to 10-fold restriction of HIV-1 and SIVmac239 in single-round assays.
  • In extended replication, AgmTRIM5α achieved a potent ≥3-log restriction of cell-free HIV-1 and SIVmac239 infection after 14 days.
  • AgmTRIM5α also restricted HIV-1 and SIVmac239 replication by 2 logs over 12 days in cell-to-cell challenges, while gorTRIM5α and rhesus TRIM5α showed limited efficacy.
  • Xenogeneic TRIM5α expression did not impact virion production or specific infectivity, ruling out assembly defects.

Conclusions:

  • AgmTRIM5α exhibits significantly greater restriction activity during extended viral replication compared to single-round infections, suggesting a cumulative inhibitory mechanism.
  • AgmTRIM5α potently restricts both HIV-1 and SIV replication in cell-to-cell transmission, even at high multiplicities of infection.
  • AgmTRIM5α stands out among tested TRIM5α species for its potent restriction capabilities, particularly in cumulative and cell-to-cell infection scenarios.