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Assessing the Innate Sensing of HIV-1 Infected CD4+ T Cells by Plasmacytoid Dendritic Cells Using an Ex vivo Co-culture System.
Published on: September 1, 2015
Sensing of HIV-1 Entry Triggers a Type I Interferon Response in Human Primary Macrophages
Jérémie Decalf1, Marion Desdouits1, Vasco Rodrigues1
1Institut Curie, PSL Research University, INSERM U932, Paris, France.
Abstract:
Along with CD4+ T lymphocytes, macrophages are a major cellular source of HIV-1 replication and a potential viral reservoir. Following entry and reverse transcription in macrophages, cloaking of the viral cDNA by the HIV-1 capsid limits its cytosolic detection, enabling efficient replication. However, whether incoming HIV-1 particles are sensed by macrophages prior to reverse transcription remains unclear. Here, we show that HIV-1 triggers a broad expression of interferon (IFN)-stimulated genes (ISG) in monocyte-derived macrophages within a few hours after infection. This response does not require viral reverse transcription or the presence of HIV-1 RNA within particles, but viral fusion is essential. This response is elicited by viruses carrying different envelope proteins and thus different receptors to proceed for viral entry. Expression of ISG in response to viral entry requires TBK1 activity and type I IFNs signaling. Remarkably, the ISG response is transient but affects subsequent viral spread. Together, our results shed light on an early step of HIV-1 sensing by macrophages at the level of entry, which confers an early protection through type I IFN signaling and has potential implications in controlling the infection.IMPORTANCE HIV infection is restricted to T lymphocytes and macrophages. HIV-1-infected macrophages are found in many tissues of infected patients, even under antiretroviral therapy, and are considered a viral reservoir. How HIV-1 is detected and what type of responses are elicited upon sensing remain in great part elusive. The kinetics and localization of the production of cytokines such as interferons in response to HIV is of critical importance to understanding how the infection and the immune response are established. Our study provides evidence that macrophages can detect HIV-1 as soon as it enters the cell. Interestingly, this sensing is independent of the presence of viral nucleic acids within the particles but requires their fusion with the macrophages. This triggers a low interferon response, which activates an antiviral program protecting cells against further viral challenge and thus potentially limiting the spread of the infection.
Insights
Macrophages detect incoming HIV-1 particles upon entry, independent of viral RNA or reverse transcription. This early sensing triggers an interferon-stimulated gene response, conferring transient protection and potentially limiting viral spread.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Macrophages are key cellular sources and reservoirs for HIV-1 replication.
- HIV-1 replication involves entry, reverse transcription, and capsid cloaking, limiting cytosolic detection.
- Early sensing mechanisms of HIV-1 by macrophages remain largely unknown.
Purpose of the Study:
- To investigate whether macrophages sense incoming HIV-1 particles before reverse transcription.
- To elucidate the mechanisms and consequences of early HIV-1 sensing by macrophages.
Main Methods:
- Infection of monocyte-derived macrophages with HIV-1.
- Measurement of interferon-stimulated gene (ISG) expression.
- Assessment of viral reverse transcription, fusion, and envelope protein dependence.
- Analysis of TBK1 activity and type I interferon signaling.
Main Results:
- HIV-1 triggers broad ISG expression in macrophages within hours post-infection.
- This response is independent of viral reverse transcription or RNA but requires viral fusion.
- The ISG response is transient, requires TBK1 activity and type I IFN signaling, and impacts viral spread.
Conclusions:
- Macrophages sense HIV-1 at the entry stage, prior to reverse transcription.
- This early sensing activates a protective type I interferon signaling pathway.
- The findings reveal an early innate immune response to HIV-1 in macrophages with implications for infection control.
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