ERK5 Signaling is Required for Type III IFN-mediated Mucosal Antiviral Responses
Bone, H.; Natour, D. S.; McFadden, M. I.; Karp, A.; Basu, A.; Keller, A.; Denz, P. J.; Collins, P. L.; Mihaylova, M. M.; Yount, J. S.; Forero, A.
Show abstract
Type III interferons (IFN{lambda}) are innate immune cytokines that limit viral replication and coordinate tissue repair through the induction of interferon stimulated genes (ISGs). This response must be tightly regulated to avoid excessive responses that result in the disruption of tissue barrier integrity or inefficient responses that allow for pathogen escape. Here we examine the contribution of Mitogen Activated Protein Kinase (MAPK) signaling on IFN{lambda}-mediated antiviral activity. We find that extracellular-signal-regulated kinase 5 (ERK5), a poorly characterized member of the conventional MAPK family, potentiates the antiviral efficacy of IFN{lambda}. Chemical inhibition and genetic targeting of ERK5 during IFN{lambda} treatment of cells results in a decrease in ISG induction and impaired control of viral infections. This decrease in IFN{lambda} antiviral efficacy in the absence of ERK5 kinase activity corresponded to lowered STAT1 phosphorylation, revealing a noncanonical role for ERK5 in STAT1 activation downstream of IFN{lambda}. In contrast, type I IFN antiviral signaling is largely resistant to ERK5 modulation. Altogether, we identify ERK5 as a potentiator of STAT1 activation, ISG expression, and antiviral activity following type III IFN stimulation. SIGNIFICANCERegulation of type III interferons (IFN{lambda}) at mucosal barriers in response infection to mitigate viral replication and support barrier integrity. The specific mechanistic requirements for MAPK signaling to sustain IFN{lambda}-mediated gene expression have remained elusive. Amongt the least characterized members of the MAPK family, the role of ERK5 in regulating host inflammatory responses has been hampered by off-target effects of kinase inhibitors. Here, we combine pharmacological and genetic approaches to specifically demonstrate that ERK5 promotes antiviral immunity in epithelial cells. Mechanistically, ERK5 enhances the activation of STAT1 in response to IFN stimulation to augment the transcription of IFN-stimulated genes. Our work demonstrates that therapeutic modulation of MAPK and IFN signaling pathway co-integration could distinguish between the protective and deleterious outcomes of IFN expression. One-sentence summaryERK5 potentiates IFN lambda responses.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Human long noncoding RNA, VILMIR, is induced by major respiratory viral infections and modulates the host interferon response 96%
- Selective interferon responses of intestinal epithelial cells minimize TNFα cytotoxicity 96%
- RNase L amplifies Interferon signaling by inducing PKR-mediated antiviral stress granules 96%
Similar papers in this journal
Similar papers in this journal
- Surface proteins of SARS-CoV-2 drive airway epithelial cells to induce interferon-dependent inflammation 96%
- Direct antiviral activity of interferon stimulated genes is responsible for resistance to paramyxoviruses in ISG15-deficient cells 96%
- A vitamin D-RelB/NF-κB pathway limits Chandipura virus multiplication by rewiring the homeostatic state of autoregulatory type 1 interferon-IRF7 signaling 95%
Similar papers in this journal
Similar papers in this journal
- The purinergic receptor P2X7 and the NLRP3 inflammasome are druggable host factors required for SARS-CoV-2 infection 95%
- High dose IFN-β activates GAF to enhance expression of ISGF3 target genes in epithelial cells 95%
- Conserved induction of distinct antiviral signalling kinetics by primate interferon lambda 4 proteins 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.