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TREM-1 Protects HIV-1-Infected Macrophages from Apoptosis through Maintenance of Mitochondrial Function
Grant R Campbell1, Rachel K To2, Stephen A Spector1,3
1Division of Infectious Diseases, Department of Pediatrics, University of California San Diego, La Jolla, California, USA gcampbell@ucsd.edu saspector@ucsd.edu.
Abstract:
Macrophages are a reservoir for latent human immunodeficiency type 1 (HIV) infection and a barrier to HIV eradication. In contrast to CD4+ T cells, macrophages are resistant to the cytopathic effects of acute HIV infection. Emerging data suggest a role for TREM1 (triggering receptor expressed on myeloid cells 1) in this resistance to HIV-mediated cytopathogenesis. Here, we show that upon HIV infection, macrophages increase the expression of BCL2, BCLXL, TREM1, mitofusin 1 (MFN1), and MFN2 and the translocation of BCL2L11 (BIM) to the mitochondria and decrease the expression of BCL2-associated agonist of cell death (BAD) and BAX while maintaining a 95% survival rate over 28 days. The HIV proteins Tat and gp120 and the GU-rich single-stranded RNA (ssRNA) (RNA40) from the HIV long terminal repeat region (and a natural Toll-like receptor 8 [TLR8] agonist) induced similar effects. TREM1 silencing in HIV-infected macrophages led to decreased expression of BCL2, BCLXL, MFN1, and MFN2 and increased expression of BAD and BAX. This correlated with a significant increase in apoptosis mediated by a disruption of the mitochondrial membrane potential (Δψm), leading to the release of cytochrome c and caspase 9 cleavage. Exposure of TREM1-silenced macrophages to Tat, gp120, or RNA40 similarly resulted in the disruption of Δψm, cytochrome c release, caspase 9 cleavage, and apoptosis. Thus, our findings identify a mechanism whereby HIV promotes macrophage survival through TREM1-dependent upregulation of BCL2 family proteins and mitofusins that inhibits BCL2L11-mediated disruption of Δψm and subsequent apoptosis. These findings indicate that TREM1 can be a useful target for elimination of the HIV reservoir in macrophages.IMPORTANCE The major challenge to human immunodeficiency virus (HIV) treatment is the development of strategies that lead to viral eradication. A roadblock to accomplishing this goal is the lack of an approach that would safely eliminate HIV from all resting/latent reservoirs, including macrophages. Macrophages are a key part of the innate immune system and are responsible for recognizing invading microbes and sending appropriate signals to other immune cells. Here, we found that HIV induces the upregulation of the protein TREM1 (triggering receptor expressed on myeloid cells 1), which signals an increase in the expression of antiapoptotic proteins, thus promoting survival of HIV-infected macrophages.
Insights
Human immunodeficiency virus (HIV) promotes macrophage survival by upregulating TREM1 (triggering receptor expressed on myeloid cells 1). This mechanism increases anti-apoptotic proteins, hindering HIV eradication efforts from macrophage reservoirs.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Macrophages serve as reservoirs for latent human immunodeficiency virus (HIV) and present a significant barrier to viral eradication.
- Unlike CD4+ T cells, macrophages exhibit resistance to the cytopathic effects of acute HIV infection, suggesting unique survival mechanisms.
Purpose of the Study:
- To elucidate the role of TREM1 (triggering receptor expressed on myeloid cells 1) in HIV-mediated cytopathogenesis and macrophage survival.
- To identify the molecular pathways through which HIV promotes macrophage survival in the context of infection.
Main Methods:
- Investigated changes in apoptosis-related protein expression (BCL2, BCLXL, BIM, BAD, BAX) in HIV-infected macrophages.
- Utilized TREM1 silencing to assess its impact on macrophage apoptosis and mitochondrial integrity.
- Examined the effects of HIV proteins (Tat, gp120) and ssRNA (RNA40) on TREM1 expression and macrophage survival.
Main Results:
- HIV infection upregulated TREM1, BCL2, BCLXL, MFN1, and MFN2, while downregulating BAD and BAX, promoting macrophage survival.
- TREM1 silencing in HIV-infected macrophages led to increased apoptosis, characterized by mitochondrial membrane potential disruption, cytochrome c release, and caspase 9 cleavage.
- Exposure of TREM1-silenced macrophages to HIV components (Tat, gp120, RNA40) mimicked these apoptotic effects.
Conclusions:
- HIV promotes macrophage survival via a TREM1-dependent pathway that upregulates anti-apoptotic proteins (BCL2 family) and mitofusins, inhibiting BIM-mediated mitochondrial disruption.
- TREM1 emerges as a potential therapeutic target for eliminating HIV reservoirs within macrophages, addressing a key challenge in viral eradication.
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