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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
CD95 Signaling Inhibits B Cell Receptor-Mediated Gammaherpesvirus Replication in Apoptosis-Resistant B Lymphoma Cells
Lingbing Tan1, Chaocan Zhang1, Julien Dematos2
1Key Laboratory of Molecular Virology and Immunology, Institut Pasteur of Shanghai, Chinese Academy of Sciences, Shanghai, China.
Abstract:
While CD95 is an apoptosis-inducing receptor and has emerged as a potential anticancer therapy target, mounting evidence shows that CD95 is also emerging as a tumor promoter by activating nonapoptotic signaling pathways. Gammaherpesviral infection is closely associated with lymphoproliferative diseases, including B cell lymphomas. The nonapoptotic function of CD95 in gammaherpesvirus-associated lymphomas is largely unknown. Here, we show that stimulation of CD95 agonist antibody drives the majority of sensitive gammaherpesvirus-transformed B cells to undergo caspase-dependent apoptosis and promotes the survival and proliferation of a subpopulation of apoptosis-resistant B cells. Surprisingly, CD95-mediated nonapoptotic signaling induced beta interferon (IFN-β) expression and correlatively inhibited B cell receptor (BCR)-mediated gammaherpesviral replication in the apoptosis-resistant lymphoma cells without influencing BCR signaling. Further analysis showed that IFN-β alone or synergizing with CD95 blocked the activation of lytic switch proteins and the gene expression of gammaherpesviruses. Our findings indicate that, independent of its apoptotic activity, CD95 signaling activity plays an important role in blocking viral replication in apoptosis-resistant, gammaherpesvirus-associated B lymphoma cells, suggesting a novel mechanism that indicates how host CD95 prototype death receptor controls the life cycle of gammaherpesviruses independent of its apoptotic activity.
Importance:
Gammaherpesviruses are closely associated with lymphoid malignancies and other cancers. Viral replication and persistence strategies leading to cancer involve the activation of antiapoptotic and proliferation programs, as well as evasion of the host immune response. Here, we provide evidence that the stimulation of CD95 agonist antibody, mimicking one of the major mechanisms of cytotoxic T cell killing, inhibits B cell receptor-mediated gammaherpesviral replication in CD95 apoptosis-resistant lymphoma cells. CD95-induced type I interferon (IFN-β) contributes to the inhibition of gammaherpesviral replication. This finding sheds new light on the CD95 nonapoptotic function and provides a novel mechanism for gammaherpesviruses that helps them to escape host immune surveillance.
Insights
CD95 signaling inhibits gammaherpesviral replication in resistant lymphoma cells via nonapoptotic pathways, inducing interferon-beta. This reveals a novel host mechanism controlling viral life cycles independent of apoptosis.
Area of Science:
- Immunology
- Virology
- Oncology
Background:
- CD95 (APO-1/Fas) is known for inducing apoptosis but also promotes tumors via nonapoptotic pathways.
- Gammaherpesviruses are linked to lymphoproliferative diseases, including B cell lymphomas.
- The nonapoptotic role of CD95 in these lymphomas is poorly understood.
Purpose of the Study:
- To investigate the nonapoptotic function of CD95 in gammaherpesvirus-associated B cell lymphomas.
- To determine if CD95 signaling influences gammaherpesviral replication.
- To elucidate the mechanisms by which CD95 signaling affects viral persistence.
Main Methods:
- Stimulation of CD95 using agonist antibodies in gammaherpesvirus-transformed B cells.
- Analysis of apoptosis sensitivity and resistance in lymphoma cell subpopulations.
- Measurement of beta interferon (IFN-β) induction and its effect on viral replication.
- Assessment of B cell receptor (BCR) signaling and lytic switch protein activation.
Main Results:
- CD95 stimulation induced apoptosis in sensitive cells but promoted survival in resistant lymphoma cells.
- Nonapoptotic CD95 signaling triggered IFN-β production in resistant cells.
- IFN-β, alone or with CD95, inhibited gammaherpesviral replication by blocking lytic gene expression.
- CD95 signaling inhibited viral replication without affecting BCR signaling.
Conclusions:
- CD95 signaling plays a critical role in blocking gammaherpesviral replication in apoptosis-resistant B lymphoma cells, independent of its apoptotic function.
- CD95-induced IFN-β is a key mediator in suppressing viral replication.
- This study uncovers a novel host defense mechanism against gammaherpesviruses mediated by CD95's nonapoptotic activity.
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