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A Primary Neuron Culture System for the Study of Herpes Simplex Virus Latency and Reactivation
Published on: April 2, 2012
Th2 Cytokine Modulates Herpesvirus Reactivation in a Cell Type Specific Manner
Guoxun Wang1, Christina Zarek1, Tyron Chang1
1Department of Immunology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Insights
Interleukin-4 (IL-4) triggers gammaherpesvirus reactivation in macrophages but not B cells, revealing cell-type-specific viral latency regulation. This finding impacts strategies for controlling chronic viral infections by targeting specific cell reservoirs.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Gammaherpesviruses establish latent infections in multiple cell types, including B cells and macrophages.
- Reactivation of latent viruses is triggered by specific cellular signals.
- Current research often overlooks cell-type-specific regulation of viral latency and reactivation.
Purpose of the Study:
- To investigate whether all latently infected cell types reactivate murine gammaherpesvirus-68 (MHV68) in response to interleukin-4 (IL-4).
- To determine the cell-type specificity of IL-4-induced MHV68 reactivation.
- To elucidate the molecular mechanisms underlying differential reactivation in various cell types.
Main Methods:
- Utilized an in vivo approach with MHV68-infected mice.
- Employed conditional knockout mice to assess the role of IL-4 receptor and STAT6 in different cell types.
- Analyzed viral gene promoter binding in macrophages and B cells.
Main Results:
- IL-4-induced MHV68 reactivation was dependent on IL-4 receptor expression in macrophages but not in B cells.
- The transcription factor STAT6 bound to the MHV68 gene 50 N4/N5 promoter in macrophages but not in B cells.
- IL-4 stimulated MHV68 reactivation exclusively from macrophages, not B cells.
Conclusions:
- Regulation of gammaherpesvirus latency and reactivation is cell-type specific.
- Therapeutic strategies targeting viral reactivation must consider the distinct responses of different infected cell types.
- Findings have significant implications for controlling chronic viral infections.
Abstract:
Gammaherpesviruses, such as Epstein-Barr virus (EBV), Kaposi's sarcoma associated virus (KSHV), and murine γ-herpesvirus 68 (MHV68), establish latent infection in B cells, macrophages, and non-lymphoid cells, and can induce both lymphoid and non-lymphoid cancers. Research on these viruses has relied heavily on immortalized B cell and endothelial cell lines. Therefore, we know very little about the cell type specific regulation of virus infection. We have previously shown that treatment of MHV68-infected macrophages with the cytokine interleukin-4 (IL-4) or challenge of MHV68-infected mice with an IL-4-inducing parasite leads to virus reactivation. However, we do not know if all latent reservoirs of the virus, including B cells, reactivate the virus in response to IL-4. Here we used an in vivo approach to address the question of whether all latently infected cell types reactivate MHV68 in response to a particular stimulus. We found that IL-4 receptor expression on macrophages was required for IL-4 to induce virus reactivation, but that it was dispensable on B cells. We further demonstrated that the transcription factor, STAT6, which is downstream of the IL-4 receptor and binds virus gene 50 N4/N5 promoter in macrophages, did not bind to the virus gene 50 N4/N5 promoter in B cells. These data suggest that stimuli that promote herpesvirus reactivation may only affect latent virus in particular cell types, but not in others.Importance Herpesviruses establish life-long quiescent infections in specific cells in the body, and only reactivate to produce infectious virus when precise signals induce them to do so. The signals that induce herpesvirus reactivation are often studied only in one particular cell type infected with the virus. However, herpesviruses establish latency in multiple cell types in their hosts. Using murine gammaherpesvirus-68 (MHV68) and conditional knockout mice, we examined the cell type specificity of a particular reactivation signal, interleukin-4 (IL-4). We found that IL-4 only induced herpesvirus reactivation from macrophages, but not from B cells. This work indicates that regulation of virus latency and reactivation is cell type specific. This has important implications for therapies aimed at either promoting or inhibiting reactivation for the control or elimination of chronic viral infections.
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