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Updated: Apr 15, 2026

Analysis of Simian Immunodeficiency Virus-specific CD8+ T-cells in Rhesus Macaques by Peptide-MHC-I Tetramer Staining
Published on: December 23, 2016
Potent restriction of HIV-1 and SIVmac239 replication by African green monkey TRIM5α
Background:
The TRIM5α protein is a principal restriction factor that contributes to an HIV-1 replication block in rhesus macaque CD4+ T cells by preventing reverse transcription. HIV-1 restriction is induced in human CD4+ T cells by expression of rhesus TRIM5α as well as those of other old world monkeys. While TRIM5α restriction has been extensively studied in single-round infection assays, fewer studies have examined restriction after extended viral replication.
Results:
To examine TRIM5α restriction of replication, we studied the ability of TRIM5α proteins from African green monkey (AgmTRIM5α) and gorilla (gorTRIM5α) to restrict HIV-1 and SIVmac239 replication. These xenogeneic TRIM5α genes were transduced into human Jurkat-CCR5 cells (JR5), which were then exposed to HIV-1 or SIVmac239. In our single-round infection assays, AgmTRIM5α showed a relatively modest 4- to 10-fold restriction of HIV-1 and SIVmac239, while gorTRIM5α produced a 2- and 3-fold restriction of HIV-1 and SIVmac239, respectively, consistent with the majority of previously published single-round studies. To assess the impact of these modest effects on infection, we tested restriction in replication systems initiated with either cell-free or cell-to-cell challenges. AgmTRIM5α powerfully restricted both HIV-1 and SIVmac239 replication 14 days after cell-free infection, with a ≥ 3-log effect. Moreover, expression of AgmTRIM5α restricted HIV-1 and SIVmac239 replication by 2-logs when co-cultured with infected JR5 cells for 12 days. In contrast, neither expression of gorTRIM5α nor rhesus TRIM5α induced significant resistance when co-cultured with infected cells. Follow up experiments showed that the observed differences between replication and infection were not due to assembly defects as xenogeneic TRIM5α expression had no effect on either virion production or specific infectivity.
Conclusions:
Our results indicate that AgmTRIM5α has a much greater effect on extended replication than on any single infection event, suggesting that AgmTRIM5α restriction acts cumulatively, building up over many rounds of replication. Furthermore, AgmTRIM5α was able to potently restrict both HIV-1 and SIV replication in a cell-to-cell infection challenge. Thus, AgmTRIM5α is unique among the TRIM5α species tested to date, being able to restrict even at the high multiplicities of infection presented by mixed culture with nonrestrictive infected cells.
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.
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