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Published on: March 23, 2022
Cytomegalovirus Evades TRAIL-Mediated Innate Lymphoid Cell 1 Defenses
Gaelle Picarda1, Raima Ghosh1, Bryan McDonald1
1Division of Immune Regulation, La Jolla Institute for Immunology, La Jolla, California, USA.
Abstract:
Cytomegalovirus (CMV) establishes a lifelong infection facilitated, in part, by circumventing immune defenses mediated by tumor necrosis factor (TNF)-family cytokines. An example of this is the mouse CMV (MCMV) m166 protein, which restricts expression of the TNF-related apoptosis-inducing ligand (TRAIL) death receptors, promoting early-phase replication. We show here that replication of an MCMV mutant lacking m166 is also severely attenuated during viral persistence in the salivary glands (SG). Depleting group I innate lymphoid cells (ILCs) or infecting Trail-/- mice completely restored persistent replication of this mutant. Group I ILCs are comprised of two subsets, conventional natural killer cells (cNK) and tissue-resident cells often referred to as innate lymphoid type I cells (ILC1). Using recently identified phenotypic markers to discriminate between these two cell types, their relative expression of TRAIL and gamma interferon (IFN-γ) was assessed during both early and persistent infection. ILC1 were found to be the major TRAIL expressers during both of these infection phases, with cNK expressing very little, indicating that it is ILC1 that curtail replication via TRAIL in the absence of m166-imposed countermeasures. Notably, despite high TRAIL expression by SG-resident ILC1, IFN-γ production by both ILC1 and cNK was minimal at this site of viral persistence. Together these results highlight TRAIL as a key ILC1-utilized effector molecule that can operate in defense against persistent infection at times when other innate control mechanisms may be muted and highlight the importance for the evolution of virus-employed countermeasures.IMPORTANCE Cytomegalovirus (a betaherpesvirus) is a master at manipulating immune responses to promote its lifelong persistence, a result of millions of years of coevolution with its host. Using a one-of-a-kind MCMV mutant unable to restrict expression of the TNF-related apoptosis-inducing ligand death receptors (TRAIL-DR), we show that TRAIL-DR signaling significantly restricts both early and persistent viral replication. Our results also reveal that these defenses are employed by TRAIL-expressing innate lymphoid type I cells (ILC1) but not conventional NK cells. Overall, our results are significant because they show the key importance of viral counterstrategies specifically neutralizing TRAIL effector functions mediated by a specific, tissue-resident subset of group I ILCs.
Insights
Cytomegalovirus evades immune responses. A specific viral mutant
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Cytomegalovirus (CMV) establishes lifelong infections by evading host immune defenses, particularly those involving tumor necrosis factor (TNF)-family cytokines.
- Mouse cytomegalovirus (MCMV) protein m166 restricts TNF-related apoptosis-inducing ligand (TRAIL) death receptors, promoting viral replication.
- Persistent MCMV replication in salivary glands is incompletely understood, especially regarding innate immune control.
Purpose of the Study:
- To investigate the role of TRAIL-mediated immunity in controlling MCMV replication during persistent infection.
- To identify the specific innate lymphoid cell (ILC) subset responsible for TRAIL-mediated antiviral defense.
- To understand the interplay between viral countermeasures and host innate immunity during CMV persistence.
Main Methods:
- Utilized a mouse cytomegalovirus (MCMV) mutant lacking the m166 protein.
- Employed group I innate lymphoid cell (ILC) depletion and TRAIL-deficient mice (Trail-/-) to assess viral replication.
- Differentiated and analyzed conventional natural killer cells (cNK) and innate lymphoid type I cells (ILC1) using phenotypic markers.
- Quantified TRAIL and gamma interferon (IFN-γ) expression in ILC subsets during infection.
Main Results:
- MCMV lacking m166 showed severely attenuated replication during persistent salivary gland infection.
- Depletion of group I ILCs or infection of Trail-/- mice restored persistent replication of the m166-deficient MCMV.
- Innate lymphoid type I cells (ILC1), but not conventional NK cells (cNK), were the primary TRAIL expressers.
- TRAIL expression by ILC1 curtailed MCMV replication in the absence of m166.
- IFN-γ production by both ILC1 and cNK cells was minimal in salivary glands despite high TRAIL expression.
Conclusions:
- TRAIL is a critical effector molecule utilized by ILC1 to restrict persistent MCMV infection.
- Viral countermeasures, like MCMV m166, are essential for overcoming TRAIL-mediated innate immunity.
- ILC1-mediated TRAIL responses provide innate immune control during viral persistence, even when other mechanisms like IFN-γ are suppressed.
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