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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Human metapneumovirus glycoprotein G inhibits innate immune responses
Xiaoyong Bao1, Tianshuang Liu, Yichu Shan
1Department of Pediatrics, University of Texas Medical Branch, Galveston, Texas, USA.
Abstract:
Human metapneumovirus (hMPV) is a leading cause of acute respiratory tract infection in infants, as well as in the elderly and immunocompromised patients. No effective treatment or vaccine for hMPV is currently available. A recombinant hMPV lacking the G protein (rhMPV-Delta G) was recently developed as a potential vaccine candidate and shown to be attenuated in the respiratory tract of a rodent model of infection. The mechanism of its attenuation, as well as the role of G protein in modulation of hMPV-induced cellular responses in vitro, as well as in vivo, is currently unknown. In this study, we found that rhMPV-Delta G-infected airway epithelial cells produced higher levels of chemokines and type I interferon (IFN) compared to cells infected with rhMPV-WT. Infection of airway epithelial cells with rhMPV-Delta G enhanced activation of transcription factors belonging to the nuclear factor (NF)-kappaB and interferon regulatory factor (IRF) families, as revealed by increased nuclear translocation and/or phosphorylation of these transcription factors. Compared to rhMPV-WT, rhMPV-Delta G also increased IRF- and NF-kappaB-dependent gene transcription, which was reversely inhibited by G protein expression. Since RNA helicases have been shown to play a fundamental role in initiating viral-induced cellular signaling, we investigated whether retinoic induced gene (RIG)-I was the target of G protein inhibitory activity. We found that indeed G protein associated with RIG-I and inhibited RIG-I-dependent gene transcription, identifying an important mechanism by which hMPV affects innate immune responses. This is the first study investigating the role of hMPV G protein in cellular signaling and identifies G as an important virulence factor, as it inhibits the production of important immune and antiviral mediators by targeting RIG-I, a major intracellular viral RNA sensor.
Insights
Human metapneumovirus (hMPV) G protein inhibits innate immunity by targeting RIG-I. Deleting the G protein in a vaccine candidate (rhMPV-Delta G) boosts immune responses, suggesting G protein is a key virulence factor.
Area of Science:
- Virology
- Immunology
- Respiratory Medicine
Background:
- Human metapneumovirus (hMPV) causes significant respiratory illness, with no current treatments or vaccines.
- A G protein-deficient hMPV (rhMPV-Delta G) shows promise as an attenuated vaccine candidate.
- The role of the hMPV G protein in immune modulation and viral attenuation remains unclear.
Purpose of the Study:
- To elucidate the mechanism behind rhMPV-Delta G attenuation.
- To investigate the role of the hMPV G protein in modulating cellular immune responses.
- To identify the specific host-pathogen interactions involving the hMPV G protein.
Main Methods:
- Comparison of immune mediator production in airway epithelial cells infected with rhMPV-Delta G versus wild-type (rhMPV-WT).
- Assessment of transcription factor activation (NF-kappaB, IRF) via nuclear translocation and phosphorylation.
- Investigation of the interaction between hMPV G protein and RIG-I (retinoic acid-inducible gene I).
Main Results:
- rhMPV-Delta G infection induced higher levels of chemokines and type I interferon (IFN) compared to rhMPV-WT.
- rhMPV-Delta G enhanced NF-kappaB and IRF activation and downstream gene transcription.
- The hMPV G protein was found to associate with RIG-I, inhibiting RIG-I-dependent gene transcription.
Conclusions:
- The hMPV G protein acts as a virulence factor by suppressing innate immune responses.
- G protein inhibits antiviral mediator production by targeting RIG-I, a key viral RNA sensor.
- rhMPV-Delta G's attenuation is linked to its inability to inhibit RIG-I and the subsequent boost in immune signaling.
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