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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Paramyxovirus activation and inhibition of innate immune responses
Griffith D Parks1, Martha A Alexander-Miller
1Department of Microbiology and Immunology, Wake Forest School of Medicine, Winston-Salem, NC 27157-1064, USA.
Abstract:
Paramyxoviruses represent a remarkably diverse family of enveloped nonsegmented negative-strand RNA viruses, some of which are the most ubiquitous disease-causing viruses of humans and animals. This review focuses on paramyxovirus activation of innate immune pathways, the mechanisms by which these RNA viruses counteract these pathways, and the innate response to paramyxovirus infection of dendritic cells (DC). Paramyxoviruses are potent activators of extracellular complement pathways, a first line of defense that viruses must face during natural infections. We discuss mechanisms by which these viruses activate and combat complement to delay neutralization. Once cells are infected, virus replication drives type I interferon (IFN) synthesis that has the potential to induce a large number of antiviral genes. Here we describe four approaches by which paramyxoviruses limit IFN induction: by limiting synthesis of IFN-inducing aberrant viral RNAs, through targeted inhibition of RNA sensors, by providing viral decoy substrates for cellular kinase complexes, and through direct blocking of the IFN promoter. In addition, paramyxoviruses have evolved diverse mechanisms to disrupt IFN signaling pathways. We describe three general mechanisms, including targeted proteolysis of signaling factors, sequestering cellular factors, and upregulation of cellular inhibitors. DC are exceptional cells with the capacity to generate adaptive immunity through the coupling of innate immune signals and T cell activation. We discuss the importance of innate responses in DC following paramyxovirus infection and their consequences for the ability to mount and maintain antiviral T cells.
Insights
Paramyxoviruses activate innate immunity but employ diverse strategies to evade complement and interferon defenses. Understanding these viral evasion mechanisms is crucial for developing effective antiviral therapies against these common human and animal pathogens.
Area of Science:
- Virology
- Immunology
Background:
- Paramyxoviruses are widespread RNA viruses causing significant human and animal diseases.
- These viruses interact with and modulate host innate immune responses.
Purpose of the Study:
- To review paramyxovirus activation of innate immune pathways.
- To elucidate viral mechanisms for counteracting these pathways.
- To examine the innate immune response to paramyxovirus infection in dendritic cells.
Main Methods:
- Review of existing literature on paramyxovirus-host immune interactions.
- Analysis of viral strategies for complement and interferon system evasion.
- Discussion of dendritic cell responses to paramyxovirus infection.
Main Results:
- Paramyxoviruses activate extracellular complement pathways but also possess mechanisms to combat complement-mediated neutralization.
- Viruses limit type I interferon induction by controlling aberrant RNA synthesis, inhibiting RNA sensors, using decoy substrates, and blocking IFN promoters.
- Paramyxoviruses disrupt interferon signaling through proteolysis, factor sequestration, and upregulation of inhibitors.
Conclusions:
- Paramyxoviruses exhibit sophisticated strategies to evade crucial innate immune defenses like complement and interferon.
- Dendritic cell responses to paramyxovirus infection are critical for initiating adaptive antiviral immunity.
- Further research into these viral evasion tactics is essential for therapeutic development.
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