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Implication of TRIM alpha and TRIMCyp in interferon-induced anti-retroviral restriction activities
Laetitia Carthagena1, Mélanie C Parise, Mathieu Ringeard
1Institut Cochin, Université Paris Descartes, CNRS (UMR 8104), Département des Maladies Infectieuses, 22 rue Méchain, 75014, Paris, France. laetitia.carthagena@inserm.fr
Background:
TRIM5 alpha is a restriction factor that interferes with retroviral infections in a species-specific manner in primate cells. Although TRIM5 alpha is constitutively expressed, its expression has been shown to be up-regulated by type I interferon (IFN). Among primates, a particular case exists in owl monkey cells, which express a fusion protein between TRIM5 and cyclophilin A, TRIMCyp, specifically interfering with HIV-1 infection. No studies have been conducted so far concerning the possible induction of TRIMCyp by IFN. We investigated the consequences of IFN treatment on retroviral restriction in diverse primate cells and evaluated the implication of TRIM5 alpha or TRIMCyp in IFN-induced anti-retroviral activities.
Results:
First, we show that human type I IFN can enhance TRIM5 alpha expression in human, African green monkey and macaque cells, as well as TRIMCyp expression in owl monkey cells. In TRIM5 alpha-expressing primate cell lines, type I IFN has little or no effect on HIV-1 infection, whereas it potentiates restriction activity against N-MLV in human and African green monkey cells. In contrast, type I IFN treatment of owl monkey cells induces a great enhancement of HIV-1 restriction, as well as a strain-tropism independent restriction of MLV. We were able to demonstrate that TRIM5 alpha is the main mediator of the IFN-induced activity against N-MLV in human and African green monkey cells, whereas TRIMCyp mediates the IFN-induced HIV-1 restriction enhancement in owl monkey cells. In contrast, the type I IFN-induced anti-MLV restriction in owl monkey cells is independent of TRIMCyp expression.
Conclusion:
Together, our observations indicate that both TRIM5 alpha and TRIMCyp are implicated in IFN-induced anti-retroviral response in primate cells. Furthermore, we found that type I IFN also induces a TRIMCyp-independent restriction activity specific to MLV in owl monkey cells.
Insights
Type I interferon (IFN) enhances TRIM5 alpha and TRIMCyp expression in primate cells, boosting antiviral activity against retroviruses like HIV-1 and MLV. This study clarifies the roles of TRIM5 alpha and TRIMCyp in IFN-mediated restriction.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- TRIM5 alpha acts as a species-specific retroviral restriction factor in primate cells.
- Type I interferon (IFN) is known to up-regulate TRIM5 alpha expression.
- Owl monkey cells uniquely express TRIMCyp, a TRIM5-cyclophilin A fusion protein, which restricts HIV-1.
Purpose of the Study:
- To investigate the impact of IFN treatment on retroviral restriction in various primate cells.
- To determine the involvement of TRIM5 alpha and TRIMCyp in IFN-induced anti-retroviral activities.
Main Methods:
- Treatment of diverse primate cell lines with type I IFN.
- Assessment of TRIM5 alpha and TRIMCyp expression levels post-IFN treatment.
- Evaluation of viral restriction activity against HIV-1 and MLV (Moloney murine leukemia virus).
Main Results:
- Type I IFN up-regulates TRIM5 alpha in human, African green monkey, and macaque cells, and TRIMCyp in owl monkey cells.
- IFN potentiates restriction against N-MLV in human and African green monkey cells via TRIM5 alpha.
- IFN significantly enhances HIV-1 restriction in owl monkey cells through TRIMCyp and induces TRIMCyp-independent MLV restriction.
Conclusions:
- Both TRIM5 alpha and TRIMCyp play roles in IFN-induced anti-retroviral responses in primate cells.
- Type I IFN also triggers a TRIMCyp-independent restriction mechanism against MLV in owl monkey cells.
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