Activation of an Immunoregulatory and Antiviral Gene Expression Program in Poly(I:C)-Transfected Human Neutrophils
Open Access
- 1 November 2008
- journal article
- Published by Oxford University Press (OUP) in The Journal of Immunology
- Vol. 181 (9) , 6563-6573
- https://doi.org/10.4049/jimmunol.181.9.6563
Abstract
Neutrophils, historically known for their involvement in acute inflammation, are also targets for infection by many different DNA and RNA viruses. However, the mechanisms by which they recognize and respond to viral components are poorly understood. Polyinosinic:polycytidylic acid (poly(I:C)) is a synthetic mimetic of viral dsRNA that is known to interact either with endosomal TLR3 (not expressed by human neutrophils) or with cytoplasmic RNA helicases such as melanoma differentiation-associated gene 5 (MDA5) and retinoic acid-inducible gene I (RIG-I). In this study, we report that intracellularly administered poly(I:C) stimulates human neutrophils to specifically express elevated mRNA levels encoding type I IFNs, immunoregulatory cytokines, and chemokines, such as TNF-α, IL-12p40, CXCL10, CXCL8, CCL4, and CCL20, as well as classical IFN-responsive genes (IRG), including IFIT1 (IFN-induced protein with tetratricopeptide repeats 1)/IFN-stimulated gene (ISG)56, G1P2/ISG15, PKR (dsRNA-dependent protein kinase), and IFN-regulatory factor (IRF)7. Investigations into the mechanisms whereby transfected poly(I:C) promotes gene expression in neutrophils uncovered a crucial involvement of the MAPK-, PKR-, NF-κB-, and TANK (TNF receptor-associated NF-κB kinase)-binding kinase (TBK1)/IRF3-signaling transduction pathways, as illustrated by the use of specific pharmacological inhibitors. Consistent with the requirement of the cytoplasmic dsRNA pathway for antiviral signaling, human neutrophils were found to constitutively express significant levels of both MDA5 and RIG-I, but not TLR3. Accordingly, neutrophils isolated from MDA5-deficient mice had a partial impairment in the production of IFN-β and TNF-α upon infection with encephalomyocarditis virus. Taken together, our data demonstrate that neutrophils are able to activate antiviral responses via helicase recognition, thus acting at the frontline of immunity against viruses.Keywords
This publication has 68 references indexed in Scilit:
- Differential recognition of double-stranded RNA by RIG-I–like receptors in antiviral immunityThe Journal of Experimental Medicine, 2008
- Length-dependent recognition of double-stranded ribonucleic acids by retinoic acid–inducible gene-I and melanoma differentiation–associated gene 5The Journal of Experimental Medicine, 2008
- Regulation of antiviral responses by a direct and specific interaction between TRAF3 and CardifThe EMBO Journal, 2006
- Essential role of mda-5 in type I IFN responses to polyriboinosinic:polyribocytidylic acid and encephalomyocarditis picornavirusProceedings of the National Academy of Sciences, 2006
- Pathogen Recognition and Innate ImmunityCell, 2006
- Cardif is an adaptor protein in the RIG-I antiviral pathway and is targeted by hepatitis C virusNature, 2005
- VISA Is an Adapter Protein Required for Virus-Triggered IFN-β SignalingMolecular Cell, 2005
- Identification and Characterization of MAVS, a Mitochondrial Antiviral Signaling Protein that Activates NF-κB and IRF3Cell, 2005
- IPS-1, an adaptor triggering RIG-I- and Mda5-mediated type I interferon inductionNature Immunology, 2005
- The RNA helicase RIG-I has an essential function in double-stranded RNA-induced innate antiviral responsesNature Immunology, 2004