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Identifying Caspases and their Motifs that Cleave Proteins During Influenza A Virus Infection
Published on: July 21, 2022
CaMKII-dependent non-canonical RIG-I pathway promotes influenza virus propagation in the acute-phase of infection
Shinichiro Hama1, Miho Watanabe-Takahashi1, Hiroki Nishimura1
1Department of Molecular Life Sciences, Graduate School of Life and Medical Sciences, Doshisha University, Kyotanabe, Japan.
Abstract:
Ca2+/calmodulin-dependent protein kinase II (CaMKII) is one of hundreds of host-cell factors involved in the propagation of type A influenza virus (IAV), although its mechanism of action is unknown. Here, we identified CaMKII inhibitory peptide M3 by targeting its kinase domain using affinity-based screening of a tailored random peptide library. M3 inhibited IAV cytopathicity and propagation in cells by specifically inhibiting the acute-phase activation of retinoic acid-inducible gene I (RIG-I), which is uniquely regulated by CaMKII. Downstream of the RIG-I pathway activated TBK1 and then IRF3, which induced small but sufficient amounts of transcripts of the genes for IFN α/β to provide the capped 5'-ends that were used preferentially as primers to synthesize viral mRNAs by the cap-snatching mechanism. Importantly, knockout of RIG-I in cells almost completely inhibited the expression of IFN mRNAs and subsequent viral NP mRNA early in infection (up to 6 h after infection), which then protected cells from cytopathicity 24 h after infection. Thus, CaMKII-dependent acute-phase activation of RIG-I promoted IAV propagation, whereas the canonical RIG-I pathway stimulated antiviral activity by inducing large amounts of mRNA for IFNs and then for antiviral proteins later in infection. Co-administration of M3 with IAV infection rescued mice from the lethality and greatly reduced proinflammatory cytokine mRNA expression in the lung, indicating that M3 is highly effective against IAV in vivo. Thus, regulation of the CaMKII-dependent non-canonical RIG-I pathway may provide a novel host-factor-directed antiviral therapy.IMPORTANCEThe recent emergence of IAV strains resistant to commonly used therapeutic agents that target viral proteins has exacerbated the need for innovative strategies. Here, we originally identified CaMKII-inhibitory peptide M3, which efficiently inhibits IAV-lethality in vitro and in vivo. M3 specifically inhibited the acute-phase activation of RIG-I, which is a novel pathway to promote IAV propagation. Thus, this pathway acts in an opposite manner compared with the canonical RIG-I pathway, which plays essential roles in antiviral innate immune response later in infection. The CaMKII-dependent non-canonical RIG-I pathway can be a promising and novel drug target for the treatment of infections.
Insights
A novel peptide, M3, inhibits CaMKII-dependent RIG-I activation, a pathway promoting influenza A virus (IAV) replication. This discovery offers a new therapeutic strategy against IAV by targeting host factors.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Influenza A virus (IAV) relies on host-cell factors for replication, but Ca2+/calmodulin-dependent protein kinase II (CaMKII)'s role remains unclear.
- Existing antiviral therapies targeting viral proteins face challenges due to emerging drug resistance.
Purpose of the Study:
- To identify host factors involved in IAV propagation and develop novel therapeutic strategies.
- To elucidate the mechanism by which CaMKII influences IAV replication.
- To evaluate the therapeutic potential of targeting the CaMKII-host-factor interaction.
Main Methods:
- Affinity-based screening of a random peptide library to identify CaMKII inhibitors.
- Characterization of the inhibitory peptide M3's effect on IAV cytopathicity and propagation.
- Investigation of M3's impact on the retinoic acid-inducible gene I (RIG-I) pathway activation.
- Analysis of interferon (IFN) and viral mRNA expression in cells with and without RIG-I.
- Assessment of M3's efficacy in a mouse model of IAV infection.
Main Results:
- CaMKII inhibitory peptide M3 was identified, specifically inhibiting the acute-phase activation of RIG-I.
- This CaMKII-dependent RIG-I activation promotes IAV propagation by facilitating viral mRNA synthesis.
- M3 treatment rescued mice from IAV-induced lethality and reduced lung inflammation.
- RIG-I knockout cells showed reduced viral replication early in infection, highlighting RIG-I's dual role.
Conclusions:
- CaMKII-dependent non-canonical RIG-I activation promotes early IAV propagation, distinct from the canonical antiviral pathway.
- M3 demonstrates significant therapeutic potential against IAV in vitro and in vivo.
- Targeting the CaMKII-dependent RIG-I pathway represents a promising novel host-factor-directed antiviral strategy.
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